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HiggsChiral Class Reference

A model class extending the StandardModel Higgs sector with. More...

#include <HiggsChiral.h>

+ Inheritance diagram for HiggsChiral:

Detailed Description

A model class extending the StandardModel Higgs sector with.

Author
HEPfit Collaboration

Model parameters

The model parameters of HiggsChiral (in addition to the StandardModel ones) are summarized below:

Label LaTeX symbol Description
cv \(c_V\)
ct \(c_t\)
cb \(c_b\)
cc \(c_c\)
cs \(c_s\)
ctau \(c_\tau\)
cmu \(c_\mu\)
cg \(c_g\)
cga \(c_\gamma\)
cZga \(c_{Z\gamma}\)

Model flags

The Flags of HiggsChiral are summarized below:

Label Value Description
Universalcf TRUE / FALSE This flag is set to TRUE if all cf are assumed to take the same universal value. The value is controlled by the parameter ct. The default value is FALSE.
Universalcvcf TRUE / FALSE This flag is set to TRUE if all cv and cf are assumed to take the same universal value. The value is controlled by the parameter ct. The default value is FALSE.

Definition at line 109 of file HiggsChiral.h.

Public Member Functions

virtual const double BrH2d2dRatio () const
 The ratio of the Br \((H\to 2d2d)\) in the current model and in the Standard Model. More...
 
virtual const double BrH2e2muRatio () const
 The ratio of the Br \((H\to 2e 2\mu)\) in the current model and in the Standard Model. More...
 
virtual const double BrH2e2vRatio () const
 The ratio of the Br \((H\to 2e2v)\) in the current model and in the Standard Model. More...
 
virtual const double BrH2evRatio () const
 The ratio of the Br \((H\to 2ev)\) in the current model and in the Standard Model. More...
 
virtual const double BrH2L2dRatio () const
 The ratio of the Br \((H\to 2L2d)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model. More...
 
virtual const double BrH2L2LRatio () const
 The ratio of the Br \((H\to 2L2L')\) ( \(L,L'=e,\mu,\tau\)) in the current model and in the Standard Model. More...
 
virtual const double BrH2L2uRatio () const
 The ratio of the Br \((H\to 2L2u)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model. More...
 
virtual const double BrH2L2v2Ratio () const
 The ratio of the Br \((H\to 2L2v)\) ( \(L=e,\mu\)) in the current model and in the Standard Model. More...
 
virtual const double BrH2L2vRatio () const
 The ratio of the Br \((H\to 2L2v)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model. More...
 
virtual const double BrH2l2vRatio () const
 The ratio of the Br \((H\to 2l2v)\) ( \(l=e,\mu\)) in the current model and in the Standard Model. More...
 
virtual const double BrH2Lv2Ratio () const
 The ratio of the Br \((H\to 2Lv)\) ( \(L=e,\mu\)) in the current model and in the Standard Model. More...
 
virtual const double BrH2LvRatio () const
 The ratio of the Br \((H\to 2Lv)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model. More...
 
virtual const double BrH2mu2vRatio () const
 The ratio of the Br \((H\to 2\mu 2v)\) in the current model and in the Standard Model. More...
 
virtual const double BrH2muvRatio () const
 The ratio of the Br \((H\to 2ev)\) in the current model and in the Standard Model. More...
 
virtual const double BrH2u2dRatio () const
 The ratio of the Br \((H\to 2u2d)\) in the current model and in the Standard Model. More...
 
virtual const double BrH2u2uRatio () const
 The ratio of the Br \((H\to 2u2u)\) in the current model and in the Standard Model. More...
 
virtual const double BrH2udRatio () const
 The ratio of the Br \((H\to 2ud)\) in the current model and in the Standard Model. More...
 
virtual const double BrH2v2dRatio () const
 The ratio of the Br \((H\to 2v2d)\) in the current model and in the Standard Model. More...
 
virtual const double BrH2v2uRatio () const
 The ratio of the Br \((H\to 2v2u)\) in the current model and in the Standard Model. More...
 
virtual const double BrH2v2vRatio () const
 The ratio of the Br \((H\to 2v2v)\) in the current model and in the Standard Model. More...
 
virtual const double BrH4dRatio () const
 The ratio of the Br \((H\to 4d)\) in the current model and in the Standard Model. More...
 
virtual const double BrH4eRatio () const
 The ratio of the Br \((H\to 4e)\) in the current model and in the Standard Model. More...
 
virtual const double BrH4fRatio () const
 The ratio of the Br \((H\to 4f)\) in the current model and in the Standard Model. More...
 
virtual const double BrH4L2Ratio () const
 The ratio of the Br \((H\to 4L)\) ( \(L=e,\mu\)) in the current model and in the Standard Model. More...
 
virtual const double BrH4LRatio () const
 The ratio of the Br \((H\to 4L)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model. More...
 
virtual const double BrH4lRatio () const
 The ratio of the Br \((H\to 4l)\) ( \(l=e,\mu\)) in the current model and in the Standard Model. More...
 
virtual const double BrH4muRatio () const
 The ratio of the Br \((H\to 4\mu)\) in the current model and in the Standard Model. More...
 
virtual const double BrH4uRatio () const
 The ratio of the Br \((H\to 4u)\) in the current model and in the Standard Model. More...
 
virtual const double BrH4vRatio () const
 The ratio of the Br \((H\to 4v)\) in the current model and in the Standard Model. More...
 
virtual const double BrHbbRatio () const
 The ratio of the Br \((H\to b\bar{b})\) in the current model and in the Standard Model. More...
 
virtual const double BrHccRatio () const
 The ratio of the Br \((H\to c\bar{c})\) in the current model and in the Standard Model. More...
 
virtual const double BrHevmuvRatio () const
 The ratio of the Br \((H\to e\nu \mu\nu)\) in the current model and in the Standard Model. More...
 
virtual const double BrHgagaRatio () const
 The ratio of the Br \((H\to \gamma\gamma)\) in the current model and in the Standard Model. More...
 
virtual const double BrHggRatio () const
 The ratio of the Br \((H\to gg)\) in the current model and in the Standard Model. More...
 
virtual const double BrHll_vvorjjRatio () const
 The ratio of the Br \((H\to l l \nu\nu, l l j j)\), \(l=e,\mu,~~j\not=b)\) in the current model and in the Standard Model. More...
 
virtual const double BrHlljjRatio () const
 The ratio of the Br \((H\to l l j j)\), \(l=e,\mu,~~j\not=b)\) in the current model and in the Standard Model. More...
 
virtual const double BrHlv_lvorjjRatio () const
 The ratio of the Br \((H\to l \nu l \nu, l \nu j j)\), \(l=e,\mu,~~j\not=b)\) in the current model and in the Standard Model. More...
 
virtual const double BrHlvjjRatio () const
 The ratio of the Br \((H\to l \nu j j)\), \(l=e,\mu,~~j\not=b)\) in the current model and in the Standard Model. More...
 
virtual const double BrHLvudRatio () const
 The ratio of the Br \((H\to Lvud)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model. More...
 
virtual const double BrHLvvLRatio () const
 The ratio of the Br \((H\to LvvL)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model. More...
 
virtual const double BrHmumuRatio () const
 The ratio of the Br \((H\to \mu^+\mu^-)\) in the current model and in the Standard Model. More...
 
virtual const double BrHssRatio () const
 The ratio of the Br \((H\to s\bar{s})\) in the current model and in the Standard Model. More...
 
virtual const double BrHtautauRatio () const
 The ratio of the Br \((H\to \tau^+\tau^-)\) in the current model and in the Standard Model. More...
 
virtual const double BrHtoinvRatio () const
 The ratio of the Br \((H\to invisible)\) in the current model and in the Standard Model. More...
 
virtual const double BrHudduRatio () const
 The ratio of the Br \((H\to uddu)\) in the current model and in the Standard Model. More...
 
virtual const double BrHVVRatio () const
 The ratio of the Br \((H\to VV)\) in the current model and in the Standard Model. More...
 
virtual const double BrHWWRatio () const
 The ratio of the Br \((H\to WW)\) in the current model and in the Standard Model. More...
 
virtual const double BrHZgaeeRatio () const
 The ratio of the Br \((H\to Z\gamma\to ee\gamma)\) in the current model and in the Standard Model. More...
 
virtual const double BrHZgallRatio () const
 The ratio of the Br \((H\to Z\gamma\to ll\gamma)\) ( \(l=e,\mu \)) in the current model and in the Standard Model. More...
 
virtual const double BrHZgamumuRatio () const
 The ratio of the Br \((H\to Z\gamma\to \mu\mu\gamma)\) in the current model and in the Standard Model. More...
 
virtual const double BrHZgaRatio () const
 The ratio of the Br \((H\to Z\gamma)\) in the current model and in the Standard Model. More...
 
virtual const double BrHZZRatio () const
 The ratio of the Br \((H\to ZZ)\) in the current model and in the Standard Model. More...
 
virtual const double cbminuscc () const
 The value of \(c_b - c_c\). More...
 
virtual const double cbminusctau () const
 The value of \(c_b - c_\tau\). More...
 
virtual const double ccminusctau () const
 The value of \(c_c - c_\tau\). More...
 
virtual const double cgaplusct () const
 The value of \(c_\gamma + c_t\). More...
 
virtual const double cgminuscga () const
 The value of \(c_g - c_\gamma\). More...
 
virtual const double cgplusct () const
 The value of \(c_g + c_t\). More...
 
virtual bool CheckParameters (const std::map< std::string, double > &DPars)
 A method to check if all the mandatory parameters for HiggsChiral have been provided in model initialization. More...
 
virtual const double computeGammaTotalRatio () const
 The ratio of the \(\Gamma(H)\) in the current model and in the Standard Model. More...
 
virtual const double cVpluscb () const
 The value of \(c_V + c_b\). More...
 
virtual const double cVplusctau () const
 The value of \(c_V + c_\tau\). More...
 
virtual const double deltaG1_hWW () const
 The new physics contribution to the coupling of the effective interaction \(H W_{\mu\nu}^\dagger W^{\mu\nu}\). More...
 
virtual const double deltaG1_hZA () const
 The new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} F^{\mu\nu}\). More...
 
virtual const double deltaG1_hZARatio () const
 The full new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} F^{A \mu\nu}\), including new local terms and modifications on the SM-loops. Normalized to the SM value. More...
 
virtual const double deltaG1_hZZ () const
 The new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} Z^{\mu\nu}\). More...
 
virtual const double deltaG2_hWW () const
 The new physics contribution to the coupling of the effective interaction \(H W_{\nu}^\dagger \partial^\mu W^{\mu\nu}\). More...
 
virtual const double deltaG2_hZA () const
 The new physics contribution to the coupling of the effective interaction \(H Z_{\nu} \partial^\mu F^{\mu\nu}\). More...
 
virtual const double deltaG2_hZZ () const
 The new physics contribution to the coupling of the effective interaction \(H Z_{\nu} \partial^\mu Z^{\mu\nu}\). More...
 
virtual const double deltaG3_hWW () const
 The new physics contribution to the coupling of the effective interaction \(H W_{\mu}^\dagger W^{\mu}\). More...
 
virtual const double deltaG3_hZZ () const
 The new physics contribution to the coupling of the effective interaction \(H Z_{\mu} Z^{\mu}\). More...
 
virtual const double deltaG_hAA () const
 The new physics contribution to the coupling of the effective interaction \(H F_{\mu\nu} F^{\mu\nu}\). More...
 
virtual const double deltaG_hAARatio () const
 The full new physics contribution to the coupling of the effective interaction \(H F_{\mu\nu} F^{\mu\nu}\), including new local terms and modifications on the SM-loops. Normalized to the SM value. More...
 
virtual gslpp::complex deltaG_hff (const Particle p) const
 The new physics contribution to the coupling of the effective interaction \(H f\bar{f}\). More...
 
virtual const double deltaG_hgg () const
 The new physics contribution to the coupling of the effective interaction \(H G_{\mu\nu}^AG^{A \mu\nu}\). More...
 
virtual const double deltaG_hggRatio () const
 The full new physics contribution to the coupling of the effective interaction \(H G_{\mu\nu}^AG^{A \mu\nu}\), including new local terms and modifications on the SM-loops. Normalized to the SM value. More...
 
virtual const double Gammabb () const
 The decay width \((H\to b \bar{b})\) in the current model. More...
 
virtual const double Gammacc () const
 The decay width \((H\to c \bar{c})\) in the current model. More...
 
virtual const double Gammagaga () const
 The decay width \((H\to \gamma\gamma)\) in the current model. More...
 
virtual const double Gammagg () const
 The decay width \((H\to gg)\) in the current model. More...
 
virtual const double Gammamumu () const
 The decay width \((H\to \mu^+ \mu^-)\) in the current model. More...
 
virtual const double Gammass () const
 The decay width \((H\to s \bar{s})\) in the current model. More...
 
virtual const double Gammatautau () const
 The decay width \((H\to \tau^+ \tau^-)\) in the current model. More...
 
virtual const double GammaTotal () const
 The total decay width of the Higgs boson in the current model. More...
 
virtual const double GammaWW () const
 The decay width \((H\to WW)\) in the current model. More...
 
virtual const double GammaZga () const
 The decay width \((H\to Z\gamma)\) in the current model. More...
 
virtual const double GammaZZ () const
 The decay width \((H\to ZZ)\) in the current model. More...
 
double getcb () const
 a getter for the EFT coeff \(c_b\) More...
 
double getcc () const
 a getter for the EFT coeff \(c_c\) More...
 
double getcg () const
 a getter for the EFT coeff \(c_g\) More...
 
double getcga () const
 a getter for the EFT coeff \(c_\gamma\) More...
 
double getcmu () const
 a getter for the EFT coeff \(c_\mu\) More...
 
double getcs () const
 a getter for the EFT coeff \(c_s\) More...
 
double getct () const
 a getter for the EFT coeff \(c_t\) More...
 
double getctau () const
 a getter for the EFT coeff \(c_\tau\) More...
 
double getcv () const
 a getter for the EFT coeff \(c_V\) More...
 
double getcZga () const
 a getter for the EFT coeff \(c_{Z\gamma}\) More...
 
double getexpZgaLimitATLAS () const
 a getter for the experimental value of the expected upper limit in \(pp \to H \to Z\gamma\) from ATLAS More...
 
double getexpZgaLimitATLAS13 () const
 a getter for the experimental value of the expected upper limit in \(pp \to H \to Z\gamma\) from ATLAS at 13 TeV More...
 
double getexpZgaLimitCMS () const
 a getter for the experimental value of the expected upper limit in \(pp \to H \to Z\gamma\) from CMS More...
 
double getexpZgaLimitCMS13 () const
 a getter for the experimental value of the expected upper limit in \(pp \to H \to Z\gamma\) from CMS at 13 TeV More...
 
double getobsZgaLimitATLAS () const
 a getter for the value of the observed upper limit in \(pp \to H \to Z\gamma\) from ATLAS More...
 
double getobsZgaLimitATLAS13 () const
 a getter for the value of the observed upper limit in \(pp \to H \to Z\gamma\) from ATLAS at 13 TeV More...
 
double getobsZgaLimitCMS () const
 a getter for the value of the observed upper limit in \(pp \to H \to Z\gamma\) from CMS More...
 
double getobsZgaLimitCMS13 () const
 a getter for the value of the observed upper limit in \(pp \to H \to Z\gamma\) from CMS at 13 TeV More...
 
 HiggsChiral ()
 The default constructor. More...
 
virtual const double kappaAeff () const
 The effective coupling \(\kappa_{A,eff}=\sqrt{\Gamma_{HAA}/\Gamma_{HAA}^{SM}}\). More...
 
virtual const double kappabeff () const
 The effective coupling \(\kappa_{b,eff}=\sqrt{\Gamma_{Hbb}/\Gamma_{Hbb}^{SM}}\). More...
 
virtual const double kappaceff () const
 The effective coupling \(\kappa_{c,eff}=\sqrt{\Gamma_{Hcc}/\Gamma_{Hcc}^{SM}}\). More...
 
virtual const double kappaGeff () const
 The effective coupling \(\kappa_{G,eff}=\sqrt{\Gamma_{HGG}/\Gamma_{HGG}^{SM}}\). More...
 
virtual const double kappamueff () const
 The effective coupling \(\kappa_{\mu,eff}=\sqrt{\Gamma_{H\mu\mu}/\Gamma_{H\mu\mu}^{SM}}\). More...
 
virtual const double kappaseff () const
 The effective coupling \(\kappa_{s,eff}=\sqrt{\Gamma_{Hss}/\Gamma_{Hss}^{SM}}\). More...
 
virtual const double kappataueff () const
 The effective coupling \(\kappa_{\tau,eff}=\sqrt{\Gamma_{H\tau\tau}/\Gamma_{H\tau\tau}^{SM}}\). More...
 
virtual const double kappaWeff () const
 The effective coupling \(\kappa_{W,eff}=\sqrt{\Gamma_{HWW}/\Gamma_{HWW}^{SM}}\). More...
 
virtual const double kappaZAeff () const
 The effective coupling \(\kappa_{ZA,eff}=\sqrt{\Gamma_{HZA}/\Gamma_{HZA}^{SM}}\). More...
 
virtual const double kappaZeff () const
 The effective coupling \(\kappa_{Z,eff}=\sqrt{\Gamma_{HZZ}/\Gamma_{HZZ}^{SM}}\). More...
 
virtual const double mueeHvv (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 The ratio \(\mu_{e^+e^- \to H\nu\bar{\nu}}\) between the \( e^+e^- \to H\nu\bar{\nu} \) associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double mueettH (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 The ratio \(\mu_{eettH}\) between the \( e^{+}e^{-}\to t\bar{t} H \) production cross-section in the current model and in the Standard Model. More...
 
virtual const double mueeWBF (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 The ratio \(\mu_{eeWBF}\) between the \( e^{+}e^{-}\to \nu\bar{\nu} H \) production cross-section in the current model and in the Standard Model. More...
 
virtual const double mueeZBF (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 The ratio \(\mu_{eeZBF}\) between the \( e^{+}e^{-}\to e^{+}e^{-} H \) production cross-section in the current model and in the Standard Model. More...
 
virtual const double mueeZH (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 The ratio \(\mu_{eeZH}\) between the \(e^{+}e^{-}\to ZH\) associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double mueeZllH (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 The ratio \(\mu_{eeZH, Z \to e^+ e^-, \mu^+ \mu^-}\) between the \( e^{+}e^{-}\to ZH, Z \to e^+ e^-, \mu^+ \mu^- \) associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double mueeZqqH (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 The ratio \(\mu_{eeZH, Z \to q \bar{q}}\) between the \( e^{+}e^{-}\to ZH, Z \to q \bar{q} \) associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double muggH (const double sqrt_s) const
 The ratio \(\mu_{ggH}\) between the gluon-gluon fusion Higgs production cross-section in the current model and in the Standard Model. More...
 
virtual const double muggHbb (const double sqrt_s) const
 The ratio \(\mu_{ggH,bb}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muggHgaga (const double sqrt_s) const
 The ratio \(\mu_{ggH,\gamma\gamma}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muggHgagaInt (const double sqrt_s) const
 The ratio \(\mu_{ggH,\gamma\gamma}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. Includes interference effects with the background, following arXiv:1704.08259. More...
 
virtual const double muggHmumu (const double sqrt_s) const
 The ratio \(\mu_{ggH,\mu\mu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muggHpttH (const double sqrt_s) const
 The ratio \(\mu_{ggH+ttH}\) between the sum of gluon-gluon fusion and t-tbar-Higgs associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double muggHtautau (const double sqrt_s) const
 The ratio \(\mu_{ggH,\tau\tau}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muggHWW (const double sqrt_s) const
 The ratio \(\mu_{ggH,WW}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muggHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{ggH,WW\to 2l2\nu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muggHZga (const double sqrt_s) const
 The ratio \(\mu_{ggH,Z\gamma}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muggHZZ (const double sqrt_s) const
 The ratio \(\mu_{ggH,ZZ}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muggHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{ggH,ZZ\to 4l}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double mummH (const double sqrt_s) const
 The ratio \(\mu_{\mu\mu H}\) between the \(\sigma(\mu \mu \to H)}\) production cross-section in the current model and in the Standard Model. More...
 
virtual const double mummHmm (const double sqrt_s) const
 The ratio \(\mu_{\mu\mu H\mu\mu}\) between the \(\sigma(\mu \mu \to H \mu \mu)}\) production cross-section in the current model and in the Standard Model. More...
 
virtual const double mummHNWA (const double sqrt_s) const
 The ratio \(\mu_{\mu\mu H}\) between the \(\sigma(\mu \mu \to H)}\) production cross-section in the current model and in the Standard Model, in the narrow width approximation. More...
 
virtual const double mummHvv (const double sqrt_s) const
 The ratio \(\mu_{\mu\mu H\nu\nu}\) between the \(\sigma(\mu \mu \to H \nu \nu)}\) production cross-section in the current model and in the Standard Model. More...
 
virtual const double mummttH (const double sqrt_s) const
 The ratio \(\mu_{\mu\mu ttH}\) between the \(\sigma(\mu \mu \to t\bar{t} H )}\) production cross-section in the current model and in the Standard Model. More...
 
virtual const double mummZH (const double sqrt_s) const
 The ratio \(\mu_{\mu\mu ZH}\) between the \(\sigma(\mu \mu \to Z H)}\) production cross-section in the current model and in the Standard Model. More...
 
virtual const double muppHmumu (const double sqrt_s) const
 The ratio \(\mu_{pp,bb}\) between the Higgs production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double mutHq (const double sqrt_s) const
 The ratio \(\mu_{tHq}\) between the t-q-Higgs associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double muTHUggHbb (const double sqrt_s) const
 The ratio \(\mu_{ggH,bb}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muTHUggHgaga (const double sqrt_s) const
 The ratio \(\mu_{ggH,\gamma\gamma}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muTHUggHmumu (const double sqrt_s) const
 The ratio \(\mu_{ggH,\mu\mu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUggHtautau (const double sqrt_s) const
 The ratio \(\mu_{ggH,\tau\tau}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muTHUggHWW (const double sqrt_s) const
 The ratio \(\mu_{ggH,WW}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUggHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{ggH,WW\to 2l2\nu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUggHZga (const double sqrt_s) const
 The ratio \(\mu_{ggH,Z\gamma}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muTHUggHZgamumu (const double sqrt_s) const
 The ratio \(\mu_{ggH,Z\gamma\to \gamma 2\mu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z \gamma\to \gamma 2\mu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUggHZZ (const double sqrt_s) const
 The ratio \(\mu_{ggH,ZZ}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUggHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{ggH,ZZ\to 4l}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double muTHUggHZZ4mu (const double sqrt_s) const
 The ratio \(\mu_{ggH,ZZ\to 4\mu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z Z^*\to 4\mu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUttHbb (const double sqrt_s) const
 The ratio \(\mu_{ttH,bb}\) between the ttH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muTHUttHgaga (const double sqrt_s) const
 The ratio \(\mu_{ttH,\gamma\gamma}\) between the ttH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muTHUttHmumu (const double sqrt_s) const
 The ratio \(\mu_{ttH,\mu\mu}\) between the ttH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUttHtautau (const double sqrt_s) const
 The ratio \(\mu_{ttH,\tau\tau}\) between the ttH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muTHUttHWW (const double sqrt_s) const
 The ratio \(\mu_{ttH,WW}\) between the ttH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUttHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{ttH,WW\to 2l2\nu}\) between the ttH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUttHZga (const double sqrt_s) const
 The ratio \(\mu_{ttH,Z\gamma}\) between the ttH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muTHUttHZZ (const double sqrt_s) const
 The ratio \(\mu_{ttH,ZZ}\) between the ttH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUttHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{ttH,ZZ\to 4l}\) between the ttH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVBFBRinv (const double sqrt_s) const
 The ratio \(\mu_{VBF}\) between the VBF production cross-section in the current model and in the Standard Model, multiplied by the total (SM+new physics) invisible decay branching ratio. More...
 
virtual const double muTHUVBFHbb (const double sqrt_s) const
 The ratio \(\mu_{VBF,bb}\) between the VBF Higgs production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVBFHgaga (const double sqrt_s) const
 The ratio \(\mu_{VBF,\gamma\gamma}\) between the VBF Higgs production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muTHUVBFHinv (const double sqrt_s) const
 The ratio \(\mu_{VBF,inv}\) between the VBF production cross-section with subsequent decay into invisible states in the current model and in the Standard Model. More...
 
virtual const double muTHUVBFHmumu (const double sqrt_s) const
 The ratio \(\mu_{VBF,\mu\mu}\) between the VBF Higgs production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVBFHtautau (const double sqrt_s) const
 The ratio \(\mu_{VBF,\tau\tau}\) between the VBF Higgs production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVBFHWW (const double sqrt_s) const
 The ratio \(\mu_{VBF,WW}\) between the VBF Higgs production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVBFHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{VBF,WW\to 2l2\nu}\) between the VBF Higgs production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVBFHZga (const double sqrt_s) const
 The ratio \(\mu_{VBF,Z\gamma}\) between the VBF Higgs production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVBFHZZ (const double sqrt_s) const
 The ratio \(\mu_{VBF,ZZ}\) between the VBF Higgs production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVBFHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{VBF,ZZ\to 4l}\) between the VBF Higgs production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVHbb (const double sqrt_s) const
 The ratio \(\mu_{VH,bb}\) between the VH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVHBRinv (const double sqrt_s) const
 The ratio \(\mu_{VH}\) between the VH production cross-section in the current model and in the Standard Model, multiplied by the total (SM+new physics) invisible decay branching ratio. More...
 
virtual const double muTHUVHgaga (const double sqrt_s) const
 The ratio \(\mu_{VH,\gamma\gamma}\) between the VH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muTHUVHinv (const double sqrt_s) const
 The ratio \(\mu_{VH,inv}\) between the VH production cross-section with subsequent decay into invisible states in the current model and in the Standard Model. More...
 
virtual const double muTHUVHmumu (const double sqrt_s) const
 The ratio \(\mu_{VH,\mu\mu}\) between the VH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVHtautau (const double sqrt_s) const
 The ratio \(\mu_{VH,\tau\tau}\) between the VH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVHWW (const double sqrt_s) const
 The ratio \(\mu_{VH,WW}\) between the VH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{VH,WW\to 2l2\nu}\) between the VH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVHZga (const double sqrt_s) const
 The ratio \(\mu_{VH,Z\gamma}\) between the VH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVHZZ (const double sqrt_s) const
 The ratio \(\mu_{VH,ZZ}\) between the VH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUVHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{VH,ZZ\to 4l}\) between the VH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double muTHUWHbb (const double sqrt_s) const
 The ratio \(\mu_{WH,bb}\) between the WH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muTHUWHgaga (const double sqrt_s) const
 The ratio \(\mu_{WH,\gamma\gamma}\) between the WH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muTHUWHmumu (const double sqrt_s) const
 The ratio \(\mu_{WH,\mu\mu}\) between the WH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUWHtautau (const double sqrt_s) const
 The ratio \(\mu_{WH,\tau\tau}\) between the WH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muTHUWHWW (const double sqrt_s) const
 The ratio \(\mu_{WH,WW}\) between the WH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUWHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{WH,WW\to 2l2\nu}\) between the WH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUWHZga (const double sqrt_s) const
 The ratio \(\mu_{WH,Z\gamma}\) between the WH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muTHUWHZZ (const double sqrt_s) const
 The ratio \(\mu_{WH,ZZ}\) between the WH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUWHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{WH,ZZ\to 4l}\) between the WH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double muTHUZHbb (const double sqrt_s) const
 The ratio \(\mu_{ZH,bb}\) between the ZH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muTHUZHgaga (const double sqrt_s) const
 The ratio \(\mu_{ZH,\gamma\gamma}\) between the ZH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muTHUZHmumu (const double sqrt_s) const
 The ratio \(\mu_{ZH,\mu\mu}\) between the ZH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUZHtautau (const double sqrt_s) const
 The ratio \(\mu_{ZH,\tau\tau}\) between the ZH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muTHUZHWW (const double sqrt_s) const
 The ratio \(\mu_{ZH,WW}\) between the ZH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUZHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{ZH,WW\to 2l2\nu}\) between the ZH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muTHUZHZga (const double sqrt_s) const
 The ratio \(\mu_{ZH,Z\gamma}\) between the ZH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muTHUZHZZ (const double sqrt_s) const
 The ratio \(\mu_{ZH,ZZ}\) between the ZH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muTHUZHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{ZH,ZZ\to 4l}\) between the ZH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double muttH (const double sqrt_s) const
 The ratio \(\mu_{ttH}\) between the t-tbar-Higgs associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double muttHbb (const double sqrt_s) const
 The ratio \(\mu_{ttH,bb}\) between the ttH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muttHgaga (const double sqrt_s) const
 The ratio \(\mu_{ttH,\gamma\gamma}\) between the ttH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muttHmumu (const double sqrt_s) const
 The ratio \(\mu_{ttH,\mu\mu}\) between the ttH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muttHtautau (const double sqrt_s) const
 The ratio \(\mu_{ttH,\tau\tau}\) between the ttH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muttHWW (const double sqrt_s) const
 The ratio \(\mu_{ttH,WW}\) between the ttH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muttHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{ttH,WW\to 2l2\nu}\) between the ttH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muttHZga (const double sqrt_s) const
 The ratio \(\mu_{ttH,Z\gamma}\) between the ttH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muttHZZ (const double sqrt_s) const
 The ratio \(\mu_{ttH,ZZ}\) between the ttH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muttHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{ttH,ZZ\to 4l}\) between the ttH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double muVBF (const double sqrt_s) const
 The ratio \(\mu_{VBF}\) between the vector-boson fusion Higgs production cross-section in the current model and in the Standard Model. More...
 
virtual const double muVBFgamma (const double sqrt_s) const
 The ratio \(\mu_{VBF+\gamma}\) between the vector-boson fusion Higgs production cross-section in association with a hard photon in the current model and in the Standard Model. More...
 
virtual const double muVBFHbb (const double sqrt_s) const
 The ratio \(\mu_{VBF,bb}\) between the VBF Higgs production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muVBFHgaga (const double sqrt_s) const
 The ratio \(\mu_{VBF,\gamma\gamma}\) between the VBF Higgs production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muVBFHmumu (const double sqrt_s) const
 The ratio \(\mu_{VBF,\mu\mu}\) between the VBF Higgs production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muVBFHtautau (const double sqrt_s) const
 The ratio \(\mu_{VBF,\tau\tau}\) between the VBF Higgs production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muVBFHWW (const double sqrt_s) const
 The ratio \(\mu_{VBF,WW}\) between the VBF Higgs production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muVBFHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{VBF,WW\to 2l2\nu}\) between the VBF Higgs production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muVBFHZga (const double sqrt_s) const
 The ratio \(\mu_{VBF,Z\gamma}\) between the VBF Higgs production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muVBFHZZ (const double sqrt_s) const
 The ratio \(\mu_{VBF,ZZ}\) between the VBF Higgs production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muVBFHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{VBF,ZZ\to 4l}\) between the VBF Higgs production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double muVBFpVH (const double sqrt_s) const
 The ratio \(\mu_{VBF+VH}\) between the sum of VBF and WH+ZH associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double muVH (const double sqrt_s) const
 The ratio \(\mu_{VH}\) between the WH+ZH associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double muVHbb (const double sqrt_s) const
 The ratio \(\mu_{VH,bb}\) between the VH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muVHgaga (const double sqrt_s) const
 The ratio \(\mu_{VH,\gamma\gamma}\) between the VH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muVHmumu (const double sqrt_s) const
 The ratio \(\mu_{VH,\mu\mu}\) between the VH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muVHpT250 (const double sqrt_s) const
 The ratio \(\mu_{VH}\) between the WH+ZH associated production cross-section in the current model and in the Standard Model, with \(p_{T,H}>250\) GeV. More...
 
virtual const double muVHtautau (const double sqrt_s) const
 The ratio \(\mu_{VH,\tau\tau}\) between the VH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muVHWW (const double sqrt_s) const
 The ratio \(\mu_{VH,WW}\) between the VH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muVHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{VH,WW\to 2l2\nu}\) between the VH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muVHZga (const double sqrt_s) const
 The ratio \(\mu_{VH,Z\gamma}\) between the VH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muVHZZ (const double sqrt_s) const
 The ratio \(\mu_{VH,ZZ}\) between the VH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muVHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{VH,ZZ\to 4l}\) between the VH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double muWH (const double sqrt_s) const
 The ratio \(\mu_{WH}\) between the W-Higgs associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double muWHbb (const double sqrt_s) const
 The ratio \(\mu_{WH,bb}\) between the WH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muWHgaga (const double sqrt_s) const
 The ratio \(\mu_{WH,\gamma\gamma}\) between the WH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muWHmumu (const double sqrt_s) const
 The ratio \(\mu_{WH,\mu\mu}\) between the WH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muWHpT250 (const double sqrt_s) const
 The ratio \(\mu_{WH}\) between the W-Higgs associated production cross-section in the current model and in the Standard Model, with \(p_{T,H}>250\) GeV. More...
 
virtual const double muWHtautau (const double sqrt_s) const
 The ratio \(\mu_{WH,\tau\tau}\) between the WH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muWHWW (const double sqrt_s) const
 The ratio \(\mu_{WH,WW}\) between the WH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muWHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{WH,WW\to 2l2\nu}\) between the WH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muWHZga (const double sqrt_s) const
 The ratio \(\mu_{WH,Z\gamma}\) between the WH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muWHZZ (const double sqrt_s) const
 The ratio \(\mu_{WH,ZZ}\) between the WH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muWHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{WH,ZZ\to 4l}\) between the WH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double muZH (const double sqrt_s) const
 The ratio \(\mu_{ZH}\) between the Z-Higgs associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double muZHbb (const double sqrt_s) const
 The ratio \(\mu_{ZH,bb}\) between the ZH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model. More...
 
virtual const double muZHgaga (const double sqrt_s) const
 The ratio \(\mu_{ZH,\gamma\gamma}\) between the ZH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. More...
 
virtual const double muZHmumu (const double sqrt_s) const
 The ratio \(\mu_{ZH,\mu\mu}\) between the ZH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model. More...
 
virtual const double muZHpT250 (const double sqrt_s) const
 The ratio \(\mu_{ZH}\) between the Z-Higgs associated production cross-section in the current model and in the Standard Model, with \(p_{T,H}>250\) GeV. More...
 
virtual const double muZHtautau (const double sqrt_s) const
 The ratio \(\mu_{ZH,\tau\tau}\) between the ZH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model. More...
 
virtual const double muZHWW (const double sqrt_s) const
 The ratio \(\mu_{ZH,WW}\) between the ZH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model. More...
 
virtual const double muZHWW2l2v (const double sqrt_s) const
 The ratio \(\mu_{ZH,WW\to 2l2\nu}\) between the ZH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model. More...
 
virtual const double muZHZga (const double sqrt_s) const
 The ratio \(\mu_{ZH,Z\gamma}\) between the ZH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model. More...
 
virtual const double muZHZZ (const double sqrt_s) const
 The ratio \(\mu_{ZH,ZZ}\) between the ZH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model. More...
 
virtual const double muZHZZ4l (const double sqrt_s) const
 The ratio \(\mu_{ZH,ZZ\to 4l}\) between the ZH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model. More...
 
virtual const double obliqueS () const
 The oblique parameter \(S\). More...
 
virtual const double obliqueT () const
 The oblique parameter \(T\). More...
 
virtual const double obliqueU () const
 The oblique parameter \(U\). More...
 
virtual bool PostUpdate ()
 The post-update method for HiggsChiral. More...
 
virtual bool setFlag (const std::string name, const bool value)
 A method to set a flag of HiggsChiral. More...
 
virtual const double UpperLimitZgammaA (const double sqrt_s) const
 Observable implementing the contribution to the likelihood from the upper limit in \(pp \to H \to Z\gamma\) from ATLAS. More...
 
virtual const double UpperLimitZgammaA13 (const double sqrt_s) const
 Observable implementing the contribution to the likelihood from the upper limit in \(pp \to H \to Z\gamma\) from ATLAS at 13 TeV. More...
 
virtual const double UpperLimitZgammaC (const double sqrt_s) const
 Observable implementing the contribution to the likelihood from the upper limit in \(pp \to H \to Z\gamma\) from CMS. More...
 
virtual const double UpperLimitZgammaC13 (const double sqrt_s) const
 Observable implementing the contribution to the likelihood from the upper limit in \(pp \to H \to Z\gamma\) from CMS at 13 TeV. More...
 
virtual ~HiggsChiral ()
 The default destructor. More...
 
- Public Member Functions inherited from NPbase
virtual const double A_f (const Particle f) const
 The left-right asymmetry in \(e^+e^-\to Z\to f \bar{f}\) at the \(Z\)-pole, \(\mathcal{A}_f\). More...
 
virtual const double AFB (const Particle f) const
 The forward-backward asymmetry in \(e^+e^-\to Z\to f \bar{f}\) at the \(Z\)-pole, \(A^f_{FB}\). More...
 
virtual const double alphaMz () const
 The electromagnetic coupling at the \(Z\)-mass scale, \(\alpha(M_Z^2)=\alpha/(1-\Delta\alpha(M_Z^2))\). More...
 
virtual const double alrmoller (const double q2, const double y) const
 
virtual const double amuon () const
 
virtual const double aPskPol (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 the angular parameter \(a\) from \(\mu_{e^+e^- \to ZH}\) (arXiv:1708.09079 [hep-ph]). More...
 
virtual const double AuxObs_NP1 () const
 Auxiliary observable AuxObs_NP1. More...
 
virtual const double AuxObs_NP10 () const
 Auxiliary observable AuxObs_NP10. More...
 
virtual const double AuxObs_NP11 () const
 Auxiliary observable AuxObs_NP11. More...
 
virtual const double AuxObs_NP12 () const
 Auxiliary observable AuxObs_NP12. More...
 
virtual const double AuxObs_NP13 () const
 Auxiliary observable AuxObs_NP13. More...
 
virtual const double AuxObs_NP14 () const
 Auxiliary observable AuxObs_NP14. More...
 
virtual const double AuxObs_NP15 () const
 Auxiliary observable AuxObs_NP15. More...
 
virtual const double AuxObs_NP16 () const
 Auxiliary observable AuxObs_NP16. More...
 
virtual const double AuxObs_NP17 () const
 Auxiliary observable AuxObs_NP17. More...
 
virtual const double AuxObs_NP18 () const
 Auxiliary observable AuxObs_NP18. More...
 
virtual const double AuxObs_NP19 () const
 Auxiliary observable AuxObs_NP19. More...
 
virtual const double AuxObs_NP2 () const
 Auxiliary observable AuxObs_NP2. More...
 
virtual const double AuxObs_NP20 () const
 Auxiliary observable AuxObs_NP20. More...
 
virtual const double AuxObs_NP21 () const
 Auxiliary observable AuxObs_NP21. More...
 
virtual const double AuxObs_NP22 () const
 Auxiliary observable AuxObs_NP22. More...
 
virtual const double AuxObs_NP23 () const
 Auxiliary observable AuxObs_NP23. More...
 
virtual const double AuxObs_NP24 () const
 Auxiliary observable AuxObs_NP24. More...
 
virtual const double AuxObs_NP25 () const
 Auxiliary observable AuxObs_NP25. More...
 
virtual const double AuxObs_NP26 () const
 Auxiliary observable AuxObs_NP26. More...
 
virtual const double AuxObs_NP27 () const
 Auxiliary observable AuxObs_NP27. More...
 
virtual const double AuxObs_NP28 () const
 Auxiliary observable AuxObs_NP28. More...
 
virtual const double AuxObs_NP29 () const
 Auxiliary observable AuxObs_NP29. More...
 
virtual const double AuxObs_NP3 () const
 Auxiliary observable AuxObs_NP3. More...
 
virtual const double AuxObs_NP30 () const
 Auxiliary observable AuxObs_NP30. More...
 
virtual const double AuxObs_NP4 () const
 Auxiliary observable AuxObs_NP4. More...
 
virtual const double AuxObs_NP5 () const
 Auxiliary observable AuxObs_NP5. More...
 
virtual const double AuxObs_NP6 () const
 Auxiliary observable AuxObs_NP6. More...
 
virtual const double AuxObs_NP7 () const
 Auxiliary observable AuxObs_NP7. More...
 
virtual const double AuxObs_NP8 () const
 Auxiliary observable AuxObs_NP8. More...
 
virtual const double AuxObs_NP9 () const
 Auxiliary observable AuxObs_NP9. More...
 
virtual const double bPskPol (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 the angular parameter \(b\) from \(\mu_{e^+e^- \to ZH}\) (arXiv:1708.09079 [hep-ph]). More...
 
virtual const double Br_H_exo () const
 The branching ratio of the of the Higgs into exotic particles. More...
 
virtual const double Br_H_inv () const
 The branching ratio of the of the Higgs into invisible particles. More...
 
virtual const double Br_H_inv_NP () const
 The branching ratio of the of the Higgs into invisible particles (only invisible new particles). More...
 
virtual const double BR_Zf (const Particle f) const
 The Branching ratio of the \(Z\) boson into a given fermion pair, \(BR_Z^{f}\). More...
 
virtual const double BrHvisRatio () const
 The ratio of the Br \((H\to visible)\) in the current model and in the Standard Model. More...
 
virtual const double BrW (const Particle fi, const Particle fj) const
 The branching ratio of the \(W\) boson decaying into a SM fermion pair, \(Br(W\to f_i f_j)\). More...
 
virtual const double C1eeHvv (const double sqrt_s) const
 The C1 value controlling linear corrections from the Higgs self-coupling to single-Higgs processes for ZH. More...
 
virtual const double C1eettH (const double sqrt_s) const
 The C1 value controlling linear corrections from the Higgs self-coupling to single-Higgs processes for ZH. More...
 
virtual const double C1eeWBF (const double sqrt_s) const
 The C1 value controlling linear corrections from the Higgs self-coupling to single-Higgs processes for ZH. More...
 
virtual const double C1eeZBF (const double sqrt_s) const
 The C1 value controlling linear corrections from the Higgs self-coupling to single-Higgs processes for ZH. More...
 
virtual const double C1eeZH (const double sqrt_s) const
 The C1 value controlling linear corrections from the Higgs self-coupling to single-Higgs processes for ZH. More...
 
const double C1Htot () const
 The C1 coefficient controlling the H^3 corrections to the total Higgs width from the Higgs trilinear coupling. More...
 
virtual const double cbW_TWG (const double mu) const
 
virtual const double CEWHd11 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hd})_{11}\). More...
 
virtual const double CEWHd22 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hd})_{22}\). More...
 
virtual const double CEWHd33 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hd})_{33}\). More...
 
virtual const double CEWHe11 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{He})_{11}\). More...
 
virtual const double CEWHe22 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{He})_{22}\). More...
 
virtual const double CEWHe33 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{He})_{33}\). More...
 
virtual const double CEWHL111 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(1)})_{11}\). More...
 
virtual const double CEWHL122 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(1)})_{22}\). More...
 
virtual const double CEWHL133 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(1)})_{33}\). More...
 
virtual const double CEWHL311 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(3)})_{11}\). More...
 
virtual const double CEWHL322 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(3)})_{22}\). More...
 
virtual const double CEWHL333 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(3)})_{33}\). More...
 
virtual const double CEWHQ111 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(1)})_{11}\). More...
 
virtual const double CEWHQ122 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(1)})_{22}\). More...
 
virtual const double CEWHQ133 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(1)})_{33}\). More...
 
virtual const double CEWHQ311 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(3)})_{11}\). More...
 
virtual const double CEWHQ322 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(3)})_{22}\). More...
 
virtual const double CEWHQ333 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(3)})_{33}\). More...
 
virtual const double CEWHQd33 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(d)})_{33}\). More...
 
virtual const double CEWHu11 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hu})_{11}\). More...
 
virtual const double CEWHu22 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hu})_{22}\). More...
 
virtual const double CEWHu33 () const
 Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hu})_{33}\). More...
 
virtual const double cgaga_HB (const double mu) const
 The Higgs-basis coupling \(c_{\gamma\gamma}\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double cgg_HB (const double mu) const
 The Higgs-basis coupling \(c_{gg}\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double cggEff_HB (const double mu) const
 The effective Higgs-basis coupling \(c_{gg}^{Eff}\). (Similar to cgg_HB but including modifications of SM loops.) (See arXiv: 1505.00046 [hep-ph] document.) More...
 
virtual const double cHb_TWG (const double mu) const
 
virtual const double cHQ3_TWG (const double mu) const
 
virtual const double cHQm_TWG (const double mu) const
 
virtual const double cHQp_TWG (const double mu) const
 
virtual const double cHt_TWG (const double mu) const
 
virtual const double cHtb_TWG (const double mu) const
 
virtual const double cQd1_TWG (const double mu) const
 
virtual const double cQd8_TWG (const double mu) const
 
virtual const double cQe_TWG (const double mu) const
 
virtual const double cQl3_TWG (const double mu) const
 
virtual const double cQlM_TWG (const double mu) const
 
virtual const double cQlP_TWG (const double mu) const
 
virtual const double cQq11_TWG (const double mu) const
 
virtual const double cQq18_TWG (const double mu) const
 
virtual const double cQQ1_TWG (const double mu) const
 
virtual const double cQq31_TWG (const double mu) const
 
virtual const double cQq38_TWG (const double mu) const
 
virtual const double cQQ8_TWG (const double mu) const
 
virtual const double cQt1_TWG (const double mu) const
 
virtual const double cQt8_TWG (const double mu) const
 
virtual const double cQu1_TWG (const double mu) const
 
virtual const double cQu8_TWG (const double mu) const
 
virtual const double ctd1_TWG (const double mu) const
 
virtual const double ctd8_TWG (const double mu) const
 
virtual const double cte_TWG (const double mu) const
 
virtual const double ctG_TWG (const double mu) const
 
virtual const double ctH_TWG (const double mu) const
 
virtual const double ctl_TWG (const double mu) const
 
virtual const double ctlS_TWG (const double mu) const
 
virtual const double ctlT_TWG (const double mu) const
 
virtual const double ctq1_TWG (const double mu) const
 
virtual const double ctq8_TWG (const double mu) const
 
virtual const double ctt1_TWG (const double mu) const
 
virtual const double ctu1_TWG (const double mu) const
 
virtual const double ctu8_TWG (const double mu) const
 
virtual const double ctW_TWG (const double mu) const
 
virtual const double ctZ_TWG (const double mu) const
 
virtual const double cZBox_HB (const double mu) const
 The Higgs-basis coupling \(c_{z\Box}\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double cZga_HB (const double mu) const
 The Higgs-basis coupling \(c_{z\gamma}\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double cZZ_HB (const double mu) const
 The Higgs-basis coupling \(c_{zz}\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double delta2sBRH3 (const double C1prod, const double C1Hxx) const
 Quadratic contribution from the Higgs self-couplings modifications to the signal strength for \(\sigma \times BR(H\to xx)\) in the current model. More...
 
virtual const double delta2sH3 (const double C1) const
 Quadratic contribution from the Higgs self-couplings modifications to the signal strength for an observable \(\sigma\) in the current model. More...
 
virtual const double delta_AFB_ee (const double pol_e, const double pol_p, const double s) const
 
virtual const double delta_AFB_f (const Particle f, const double pol_e, const double pol_p, const double s) const
 
virtual const double delta_alrmoller (const double q2, const double y) const
 The computation of the parity violating asymmetry in Moller scattering. More...
 
virtual const double delta_amuon () const
 The computation of the anomalous magnetic moment of the muon \(a_\mu=(g_\mu-2)/2\). More...
 
virtual const double delta_Dsigma_f (const Particle f, const double pol_e, const double pol_p, const double s, const double cos) const
 
virtual const double delta_gAnue () const
 The computation of the correction to the effective (muon) neutrino-electron vector coupling: delta_gAnue. More...
 
virtual const double delta_gLnuN2 () const
 The computation of the correction to the effective neutrino nucleon LH coupling: delta_gLnuN2. More...
 
virtual const double delta_gRnuN2 () const
 The computation of the correction to the effective neutrino nucleon RH coupling: delta_gRnuN2. More...
 
virtual const double delta_gVnue () const
 The computation of the correction to the effective (muon) neutrino-electron vector coupling: delta_gVnue. More...
 
virtual const double delta_mubbH_1 (const double sqrt_s) const
 
virtual const double delta_mubbH_2 (const double sqrt_s) const
 
virtual const double delta_muggH_1 (const double sqrt_s) const
 
virtual const double delta_muggH_2 (const double sqrt_s) const
 
virtual const double delta_mutH_1 (const double sqrt_s) const
 
virtual const double delta_mutH_2 (const double sqrt_s) const
 
virtual const double delta_muttH_1 (const double sqrt_s) const
 
virtual const double delta_muttH_2 (const double sqrt_s) const
 
virtual const double delta_muVBF_1 (const double sqrt_s) const
 
virtual const double delta_muVBF_2 (const double sqrt_s) const
 
virtual const double delta_muVH_1 (const double sqrt_s) const
 
virtual const double delta_muVH_2 (const double sqrt_s) const
 
virtual const double delta_muWH_1 (const double sqrt_s) const
 
virtual const double delta_muWH_2 (const double sqrt_s) const
 
virtual const double delta_muZH_1 (const double sqrt_s) const
 
virtual const double delta_muZH_2 (const double sqrt_s) const
 
virtual const double delta_Qwemoller (const double q2, const double y) const
 The computation of the electron's weak charge. More...
 
virtual const double delta_Qwn () const
 The computation of the neutron weak charge: Qwn. More...
 
virtual const double delta_Qwp () const
 The computation of the proton weak charge: Qwp. More...
 
virtual const double delta_sigma_ee (const double pol_e, const double pol_p, const double s, const double cosmin, const double cosmax) const
 
virtual const double delta_sigma_f (const Particle f, const double pol_e, const double pol_p, const double s, const double cosmin, const double cosmax) const
 
virtual const double delta_sigma_had (const double pol_e, const double pol_p, const double s, const double cosmin, const double cosmax) const
 
virtual const double delta_sigmaTot_ee (const double pol_e, const double pol_p, const double s) const
 
virtual const double delta_sigmaTot_f (const Particle f, const double pol_e, const double pol_p, const double s) const
 
virtual const double delta_TauLFU_gmuge () const
 The computation of the correction to the LFU ratio \(g_\mu/ g_e \). More...
 
virtual const double delta_TauLFU_gtauge () const
 The computation of the correction to the LFU ratio \(g_\tau/ g_e \). More...
 
virtual const double delta_TauLFU_gtaugmu () const
 The computation of the correction to the LFU ratio \(g_\tau/ g_\mu \). More...
 
virtual const double delta_TauLFU_gtaugmuK () const
 The computation of the correction to the LFU ratio \(\left(g_\tau/ g_\mu\right)_K \). More...
 
virtual const double delta_TauLFU_gtaugmuPi () const
 The computation of the correction to the LFU ratio \(\left(g_\tau/ g_\mu\right)_\pi \). More...
 
virtual const double deltaA_f (const Particle f) const
 The new physics contribution to the left-right asymmetry in \(e^+e^-\to Z\to f \bar{f}\) at the \(Z\)-pole, \(\delta \mathcal{A}_f\). More...
 
virtual const double deltaA_f_2 (const Particle f) const
 The \(\mathcal{O}(\Lambda^{-4})\) new physics contribution to the left-right asymmetry in \(e^+e^-\to Z\to f \bar{f}\) at the \(Z\)-pole, \(\Delta \mathcal{A}_f^{(2)}\). More...
 
virtual const double deltaAFB (const Particle f) const
 The new physics contribution to the forward-backward asymmetry in \(e^+e^-\to Z\to f \bar{f}\) at the \(Z\)-pole, \(\delta A^f_{FB}\). More...
 
virtual const double deltaAFB_2 (const Particle f) const
 The \(\mathcal{O}(\Lambda^{-4})\) new physics to the forward-backward asymmetry in \(e^+e^-\to Z\to f \bar{f}\) at the \(Z\)-pole, \(\Delta A^f_{FB}\). More...
 
virtual const double deltacZ_HB (const double mu) const
 The Higgs-basis coupling \(\delta c_z\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double deltadxsdcoseeWWlvjjLEP2 (const double sqrt_s, const int bin) const
 The new physics contribution to the differential cross section in pb for \(e^+ e^- \to W^+ W^- \to lv jj \), with \( l= e,\mu \) for the 4 \( cos{\theta}\) bins defined in arXiv: 1606.06693 [hep-ph]. for the C.O.M. energies of 182.6 and 205.9 GeV. From arXiv: 1606.06693 [hep-ph]. More...
 
virtual const double deltaeNP (const double mu) const
 The new physics relative contribution to the EW coupling constant \(e\). More...
 
virtual const double deltaG1_hWW_mu (const double mu) const
 The new physics contribution to the coupling of the effective interaction \(H W_{\mu\nu}^\dagger W^{\mu\nu}\). More...
 
virtual const double deltaG1_hZA_mu (const double mu) const
 The new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} F^{\mu\nu}\). More...
 
virtual const double deltaG1_hZARatio_mu (const double mu) const
 The full new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} F^{A \mu\nu}\), including new local terms and modifications on the SM-loops. Normalized to the SM value. More...
 
virtual const double deltaG1_hZZ_mu (const double mu) const
 The new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} Z^{\mu\nu}\). More...
 
virtual const double deltag1gaNP (const double mu) const
 The new physics contribution to the anomalous triple gauge coupling \(g_{1,Z}\). More...
 
virtual const double deltag1ZNP (const double mu) const
 The new physics contribution to the anomalous triple gauge coupling \(g_{1,Z}\). More...
 
virtual const double deltag1ZNPEff () const
 The new physics contribution to the effective anomalous triple gauge coupling \(g_{1,Z}^{Eff}\) from arXiv: 1708.09079 [hep-ph]. More...
 
virtual const double deltaG2_hWW_mu (const double mu) const
 The new physics contribution to the coupling of the effective interaction \(H W_{\nu}^\dagger \partial^\mu W^{\mu\nu}\). More...
 
virtual const double deltaG2_hZA_mu (const double mu) const
 The new physics contribution to the coupling of the effective interaction \(H Z_{\nu} \partial^\mu F^{\mu\nu}\). More...
 
virtual const double deltaG2_hZZ_mu (const double mu) const
 The new physics contribution to the coupling of the effective interaction \(H Z_{\nu} \partial^\mu Z^{\mu\nu}\). More...
 
virtual const double deltaG3_hWW_mu (const double mu) const
 The new physics contribution to the coupling of the effective interaction \(H W_{\mu}^\dagger W^{\mu}\). More...
 
virtual const double deltaG3_hZZ_mu (const double mu) const
 The new physics contribution to the coupling of the effective interaction \(H Z_{\mu} Z^{\mu}\). More...
 
virtual const double deltaG_hAA_mu (const double mu) const
 The new physics contribution to the coupling of the effective interaction \(H F_{\mu\nu} F^{\mu\nu}\). More...
 
virtual const double deltaG_hAARatio_mu (const double mu) const
 The full new physics contribution to the coupling of the effective interaction \(H F_{\mu\nu} F^{\mu\nu}\), including new local terms and modifications on the SM-loops. Normalized to the SM value. More...
 
virtual gslpp::complex deltaG_hff_mu (const Particle p, const double mu) const
 The new physics contribution to the coupling of the effective interaction \(H f\bar{f}\). More...
 
virtual const double deltaG_hgg_mu (const double mu) const
 The new physics contribution to the coupling of the effective interaction \(H G_{\mu\nu}^AG^{A \mu\nu}\). More...
 
virtual const double deltaG_hggRatio_mu (const double mu) const
 The full new physics contribution to the coupling of the effective interaction \(H G_{\mu\nu}^AG^{A \mu\nu}\), including new local terms and modifications on the SM-loops. Normalized to the SM value. More...
 
virtual const double deltaG_hhhRatio () const
 The new physics contribution to the Higgs self-coupling \( H H H\). Normalized to the SM value. More...
 
virtual const double deltaG_hhhRatio_mu (const double mu) const
 The new physics contribution to the Higgs self-coupling \( H H H\). Normalized to the SM value. More...
 
virtual const double deltaGA_f (const Particle f) const
 New physics contribution to the neutral-current axial-vector coupling \(g_A^f\). More...
 
virtual const double deltaGA_f_2 (const Particle f) const
 
virtual const double deltaGamma_W () const
 The new physics contribution to the total decay width of the \(W\) boson, \(\delta \Gamma_W\). More...
 
virtual const double deltaGamma_Wff (const Particle fi, const Particle fj) const
 The new physics contribution to the decay width of the \(W\) boson into a given fermion pair, \(\delta \Gamma_Z^{f}\). More...
 
virtual const double deltaGamma_Z () const
 The new physics contribution to the total decay width of the \(Z\) boson, \(\delta \Gamma_Z\). More...
 
virtual const double deltaGamma_Z_2 () const
 The \(\mathcal{O}(\Lambda^{-4})\) new physics contribution to the total decay width of the \(Z\) boson, \(\Delta \Gamma_Z^{(2)}\). More...
 
virtual const double deltaGamma_Zf (const Particle f) const
 The new physics contribution to the decay width of the \(Z\) boson into a given fermion pair, \(\delta \Gamma_Z^{f}\). More...
 
virtual const double deltaGamma_Zf_2 (const Particle f) const
 The \(\mathcal{O}(\Lambda^{-4})\) new physics contribution to the decay width of the \(Z\) boson into a given fermion pair, \(\Delta \Gamma_{Z,f}^{(2)}\). More...
 
virtual const double deltaGamma_Zhad () const
 The new physics contribution to the hadronic decay width of the \(Z\) boson, \(\delta \Gamma_{Z,had}\). More...
 
virtual const double deltaGamma_Zhad_2 () const
 The \(\mathcal{O}(\Lambda^{-4})\) new physics contribution to the hadronic decay width of the \(Z\) boson, \(\Delta \Gamma_{Z,had}^{(2)}\). More...
 
virtual const double deltaGammaHbbRatio1 () const
 
virtual const double deltaGammaHbbRatio2 () const
 
virtual const double deltaGammaHccRatio1 () const
 
virtual const double deltaGammaHccRatio2 () const
 
virtual const double deltaGammaHgagaRatio1 () const
 
virtual const double deltaGammaHgagaRatio2 () const
 
virtual const double deltaGammaHggRatio1 () const
 
virtual const double deltaGammaHggRatio2 () const
 
virtual const double deltaGammaHmumuRatio1 () const
 
virtual const double deltaGammaHmumuRatio2 () const
 
virtual const double deltaGammaHtautauRatio1 () const
 
virtual const double deltaGammaHtautauRatio2 () const
 
virtual const double deltaGammaHWWRatio1 () const
 
virtual const double deltaGammaHWWRatio2 () const
 
virtual const double deltaGammaHZgaRatio1 () const
 
virtual const double deltaGammaHZgaRatio2 () const
 
virtual const double deltaGammaHZZRatio1 () const
 
virtual const double deltaGammaHZZRatio2 () const
 
virtual const double deltaGammaTotalRatio1 () const
 
virtual const double deltaGammaTotalRatio2 () const
 
virtual const double DeltaGF () const
 New physics contribution to the Fermi constant. More...
 
const double deltaGL_f_mu (const Particle p, const double mu) const
 New physics contribution to the neutral-current left-handed coupling \(g_L^f\). More...
 
virtual gslpp::complex deltaGL_Wff (const Particle pbar, const Particle p) const
 New physics contribution to the charged current coupling \(W_\mu \bar{f_L}\gamma^mu f_L\). More...
 
virtual gslpp::complex deltaGL_Wff_mu (const Particle pbar, const Particle p, const double mu) const
 New physics contribution to the charged current coupling \(W_\mu \bar{f_L}\gamma^mu f_L\). More...
 
const double deltaGR_f_mu (const Particle p, const double mu) const
 New physics contribution to the neutral-current right-handed coupling \(g_R^f\). More...
 
virtual gslpp::complex deltaGR_Wff (const Particle pbar, const Particle p) const
 New physics contribution to the charged current coupling \(W_\mu \bar{f_R}\gamma^mu f_R\). More...
 
virtual gslpp::complex deltaGR_Wff_mu (const Particle pbar, const Particle p, const double mu) const
 New physics contribution to the charged current coupling \(W_\mu \bar{f_R}\gamma^mu f_R\). More...
 
virtual const double deltaGV_f (const Particle f) const
 New physics contribution to the neutral-current vector coupling \(g_V^f\). More...
 
virtual const double deltaGV_f_2 (const Particle f) const
 
virtual const double deltaKgammaNP (const double mu) const
 The new physics contribution to the anomalous triple gauge coupling \(\kappa_{\gamma}\). More...
 
virtual const double deltaKgammaNPEff () const
 The new physics contribution to the effective anomalous triple gauge coupling \(\kappa_{\gamma}^{Eff}\) from arXiv: 1708.09079 [hep-ph]. More...
 
virtual const double deltaN_nu () const
 The new physics contribution to the number of neutrinos dervied from the \(Z\) pole measurements. More...
 
virtual const double deltaR0_f (const Particle f) const
 The new physics contribution to the ratio \(R_\ell^0=\Gamma_{\mathrm{had}}/\Gamma_\ell\), \(R_q^0=\Gamma_q/\Gamma_{\mathrm{had}}\) and \(R_\nu^0=\Gamma_\nu/\Gamma_{\mathrm{had}}\), for charged leptons, quarks and neutrinos, respectively. More...
 
virtual const double deltaR0_f_2 (const Particle f) const
 The \(\mathcal{O}(\Lambda^{-4})\) new physics contribution to the ratio \(R_\ell^0=\Gamma_{\mathrm{had}}/\Gamma_\ell\), \(R_q^0=\Gamma_q/\Gamma_{\mathrm{had}}\) and \(R_\nu^0=\Gamma_\nu/\Gamma_{\mathrm{had}}\), for charged leptons, quarks and neutrinos: More...
 
virtual const double deltaR_inv () const
 The new physics contribution to the ratio of invisible and leptonic (electron) decay widths of the \(Z\) boson, \(\delta R_{inv}\). More...
 
virtual const double deltaRuc () const
 The new physics contribution to the ratio of the \(Z\to u\bar{u} + Z\to c\bar{c}\) width to the \(Z\)-boson hadronic width: More...
 
virtual const double deltaRuc_2 () const
 The \(\mathcal{O}(1/\Lambda^4)\) new physics contribution to the ratio of the \(Z\to u\bar{u} + Z\to c\bar{c}\) width to the \(Z\)-boson hadronic width: More...
 
virtual const double deltaSigmaHadron () const
 The new physics contribution to the cross section for the process \(e^+ e^-\to Z\to \mathrm{hadrons}\) at the \(Z\) pole, \(\delta \sigma_h^0\). More...
 
virtual const double deltaSigmaHadron_2 () const
 The \(\mathcal{O}(\Lambda^{-4})\) new physics contribution to the cross section for the process \(e^+ e^-\to Z\to \mathrm{hadrons}\) at the \(Z\) pole, \(\Delta \sigma_h^{0,(2)}\). More...
 
virtual const double deltaSin2thetaEff_e () const
 The new physics contribution to the effective electron/leptonic weak angle \(\delta \sin^2\theta_{\rm eff}^{\rm lept}\) at the \(Z\) pole. More...
 
virtual const double deltaSin2thetaEff_e_2 () const
 The \(\mathcal{O}(\Lambda^{-4})\) new physics contribution to the effective electron weak angle \(\Delta \sin^2\theta_{eff,e}^{(2)}\) at the \(Z\) pole. More...
 
virtual const double deltaSin2thetaEff_mu () const
 The new physics contribution to the effective muonic weak angle \(\delta \sin^2\theta_{\rm eff}^{\mu\mu}\) at the \(Z\) pole. More...
 
virtual const double deltaSin2thetaEff_mu_2 () const
 The \(\mathcal{O}(\Lambda^{-4})\) new physics contribution to the effective muonic weak angle \(\Delta \sin^2\theta_{eff, \mu}^{(2)}\) at the \(Z\) pole. More...
 
virtual const double deltaxseeWW4fLEP2 (const double sqrt_s, const int fstate) const
 The new physics contribution to the cross section in pb for \(e^+ e^- \to W^+ W^- \to 4f \), with \( 4f = 0 (jjjj), 1 (e v jj), 2 (mu v jj), 3 (tau v jj), 4 (e v e v), 5 (mu v mu v), 6 (tau v tau v), 7 (e v mu v), 8 (e v tau v), 9 (mu v tau v), 10 (l v jj), 11 (l v l v) \) the different fermion final states for C.O.M. energies in 188-208 GeV. From arXiv: 1606.06693 [hep-ph]. More...
 
virtual const double deltaxseeWWhadLEP2 (const double sqrt_s) const
 The new physics contribution to the cross section in pb for \(e^+ e^- \to W^+ W^- \to j j j j\), summing over all final states for C.O.M. energies in 188-208 GeV. From arXiv: 1606.06693 [hep-ph]. Defined only for the NPSMEFTd6 class. More...
 
virtual const double deltaxseeWWleptLEP2 (const double sqrt_s) const
 The new physics contribution to the cross section in pb for \(e^+ e^- \to W^+ W^- \to \ell \nu \ell \nu\), summing over all final states for C.O.M. energies in 188-208 GeV. From arXiv: 1606.06693 [hep-ph]. Defined only for the NPSMEFTd6 class. More...
 
virtual const double deltaxseeWWsemilLEP2 (const double sqrt_s) const
 The new physics contribution to the cross section in pb for \(e^+ e^- \to W^+ W^- \to \ell \nu j j\), summing over all final states for C.O.M. energies in 188-208 GeV. From arXiv: 1606.06693 [hep-ph]. Defined only for the NPSMEFTd6 class. More...
 
virtual const double deltaxseeWWtotLEP2 (const double sqrt_s) const
 The new physics contribution to the total cross section in pb for \(e^+ e^- \to W^+ W^-\), summing over all final states for C.O.M. energies in 188-208 GeV. From arXiv: 1606.06693 [hep-ph]. More...
 
virtual const double deltayb_HB (const double mu) const
 The Higgs-basis coupling \(\delta y_b\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double deltayc_HB (const double mu) const
 The Higgs-basis coupling \(\delta y_c\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double deltaymu_HB (const double mu) const
 The Higgs-basis coupling \(\delta y_\mu\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double deltays_HB (const double mu) const
 The Higgs-basis coupling \(\delta y_s\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double deltayt_HB (const double mu) const
 The Higgs-basis coupling \(\delta y_t\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double deltaytau_HB (const double mu) const
 The Higgs-basis coupling \(\delta y_\tau\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double dxsdcoseeWWlvjjLEP2 (const double sqrt_s, const int bin) const
 The differential cross section in pb for \(e^+ e^- \to W^+ W^- \to lv jj \), with \( l= e,\mu \) for the 4 \( cos{\theta}\) bins defined in arXiv: 1606.06693 [hep-ph]. for the C.O.M. energies of 182.6 and 205.9 GeV. From arXiv: 1606.06693 [hep-ph]. Defined only for the NPSMEFTd6 class. More...
 
virtual const double dxseeWWdcos (const double sqrt_s, const double cos) const
 The differential distribution for \(e^+ e^- \to W^+ W^- \to jj \ell \nu\), with \(\ell= e, \mu\), as a function of the \(W\) polar angle. More...
 
virtual const double dxseeWWdcosBin (const double sqrt_s, const double cos1, const double cos2) const
 The integral of differential distribution for \(e^+ e^- \to W^+ W^- \to jj \ell \nu\), with \(\ell= e, \mu\) in a given bin of the \(W\) polar angle. More...
 
virtual const double eeffAFBbottom (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffAFBcharm (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffAFBe (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffAFBetsub (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffAFBmu (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffAFBstrange (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffAFBtau (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffRbottom (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffRcharm (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffRelectron (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffRelectrontsub (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffRmuon (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffRstrange (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffRtau (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffsigmaBottom (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffsigmaCharm (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffsigmaE (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffsigmaEtsub (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffsigmaHadron (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffsigmaMu (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffsigmaStrange (const double pol_e, const double pol_p, const double s) const
 
virtual const double eeffsigmaTau (const double pol_e, const double pol_p, const double s) const
 
virtual const gslpp::complex gA_f (const Particle f) const
 The total (SM+NP) contribution to the neutral-current axial-vector coupling \(g_A^f\). More...
 
virtual const double Gamma_had () const
 The hadronic decay width of the \(Z\) boson, \(\Gamma_{Z,had}\). More...
 
virtual const double Gamma_Z () const
 The total decay width of the \(Z\) boson, \(\Gamma_Z\). More...
 
virtual const double Gamma_Zf (const Particle f) const
 The decay width of the \(Z\) boson into a given fermion pair, \(\Gamma_Z^{f}\). More...
 
virtual const double GammaHbbRatio () const
 The ratio of the \(\Gamma(H\to b\bar{b})\) in the current model and in the Standard Model. More...
 
virtual const double GammaHccRatio () const
 The ratio of the \(\Gamma(H\to c\bar{c})\) in the current model and in the Standard Model. More...
 
virtual const double GammaHgagaRatio () const
 The ratio of the \(\Gamma(H\to \gamma\gamma)\) in the current model and in the Standard Model. More...
 
virtual const double GammaHggRatio () const
 The ratio of the \(\Gamma(H\to gg)\) in the current model and in the Standard Model. More...
 
virtual const double GammaHmumuRatio () const
 The ratio of the \(\Gamma(H\to \mu^+\mu^-)\) in the current model and in the Standard Model. More...
 
virtual const double GammaHssRatio () const
 The ratio of the \(\Gamma(H\to s\bar{s})\) in the current model and in the Standard Model. More...
 
virtual const double GammaHtautauRatio () const
 The ratio of the \(\Gamma(H\to \tau^+\tau^-)\) in the current model and in the Standard Model. More...
 
virtual const double GammaHWWRatio () const
 The ratio of the \(\Gamma(H\to WW)\) in the current model and in the Standard Model. More...
 
virtual const double GammaHZgaRatio () const
 The ratio of the \(\Gamma(H\to Z\gamma)\) in the current model and in the Standard Model. More...
 
virtual const double GammaHZZRatio () const
 The ratio of the \(\Gamma(H\to ZZ)\) in the current model and in the Standard Model. More...
 
virtual const double GammaW () const
 The total width of the \(W\) boson, \(\Gamma_W\). More...
 
virtual const double GammaW (const Particle fi, const Particle fj) const
 A partial decay width of the \(W\) boson decay into a SM fermion pair. More...
 
virtual const double gAnue () const
 
virtual const StandardModelgetTrueSM () const
 A method to return a StandardModel object from NPbase. More...
 
virtual const double gLnuN2 () const
 
virtual const double gRnuN2 () const
 
virtual const gslpp::complex gV_f (const Particle f) const
 The total (SM+NP) contribution to the neutral-current vector coupling \(g_V^f\). More...
 
virtual const double gVnue () const
 
virtual const double IctW_TWG (const double mu) const
 
virtual const double IctZ_TWG (const double mu) const
 
virtual const double kappaW4feff () const
 The effective coupling \(\kappa_{W4f,eff}=\sqrt{\Gamma_{H4f, CC}/\Gamma_{H4f, CC}^{SM}}\). More...
 
virtual const double kappaZ4feff () const
 The effective coupling \(\kappa_{Z4f,eff}=\sqrt{\Gamma_{H4f, NC}/\Gamma_{H4f, NC}^{SM}}\). More...
 
virtual const gslpp::complex kappaZ_f (const Particle f) const
 The effective neutral-current coupling \(\kappa_Z^f\) including SM plus NP contributions. More...
 
virtual const double lambdaZNP (const double mu) const
 The new physics contribution to the anomalous triple gauge coupling \(\lambda_{Z}\). More...
 
virtual const double lambz_HB (const double mu) const
 The Higgs-basis coupling \(\lambda_{z}\). (See LHCHXSWG-INT-2015-001 document.) More...
 
virtual const double LEP2AFBbottom (const double s) const
 
virtual const double LEP2AFBcharm (const double s) const
 
virtual const double LEP2AFBe (const double s) const
 
virtual const double LEP2AFBmu (const double s) const
 
virtual const double LEP2AFBtau (const double s) const
 
virtual const double LEP2dsigmadcosBinE (const double s, const double cos, const double cosmin, const double cosmax) const
 
virtual const double LEP2dsigmadcosBinMu (const double s, const double cos, const double cosmin, const double cosmax) const
 
virtual const double LEP2dsigmadcosBinTau (const double s, const double cos, const double cosmin, const double cosmax) const
 
virtual const double LEP2dsigmadcosE (const double s, const double cos) const
 
virtual const double LEP2dsigmadcosMu (const double s, const double cos) const
 
virtual const double LEP2dsigmadcosTau (const double s, const double cos) const
 
virtual const double LEP2Rbottom (const double s) const
 
virtual const double LEP2Rcharm (const double s) const
 
virtual const double LEP2sigmaBottom (const double s) const
 
virtual const double LEP2sigmaCharm (const double s) const
 
virtual const double LEP2sigmaE (const double s) const
 
virtual const double LEP2sigmaHadron (const double s) const
 
virtual const double LEP2sigmaMu (const double s) const
 
virtual const double LEP2sigmaTau (const double s) const
 
virtual const double mubbH (const double sqrt_s) const
 The ratio \(\mu_{bbH}\) between the bbH production cross-section in the current model and in the Standard Model. More...
 
virtual const double mueeHee (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 The ratio \(\mu_{e^+e^- \to He^+e^-}\) between the \( e^+e^- \to H e^+e^- \) associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double mueeWW (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 The ratio \(\mu_{eeWW}\) between the \( e^{+}e^{-}\to W^{+}W^{-} \) production cross-section in the current model and in the Standard Model. More...
 
virtual const double mueeZHGen (const double sqrt_s, const double Pol_em, const double Pol_ep) const
 The ratio \(\mu_{eeZH}\) between the \( e^{+}e^{-}\to ZH \) associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double muepWBF (const double sqrt_s) const
 The ratio \(\mu_{epWBF}\) between the \( e^{-} p\to \nu j H \) production cross-section in the current model and in the Standard Model. More...
 
virtual const double muepZBF (const double sqrt_s) const
 The ratio \(\mu_{epZBF}\) between the \( e^{-} p\to e^{-} j H \) production cross-section in the current model and in the Standard Model. More...
 
virtual const double muggHH (const double sqrt_s) const
 The ratio \(\mu_{ggHH}\) between the gluon-gluon fusion di-Higgs production cross-section in the current model and in the Standard Model. More...
 
virtual const double muggHpbbH_Hgaga (const double sqrt_s) const
 
virtual const double muggHpbbH_Htautau (const double sqrt_s) const
 
virtual const double muggHpbbH_HWW (const double sqrt_s) const
 
virtual const double muggHpbbH_HZZ (const double sqrt_s) const
 
virtual const double muggHpttHptHpbbH_Hmumu (const double sqrt_s) const
 
virtual const double muggHpttHptHpbbH_HZga (const double sqrt_s) const
 
virtual const double muggHpVBFpbbH_Hbb (const double sqrt_s) const
 
virtual const double muppHZga (const double sqrt_s) const
 
virtual const double mupTVppWZ (const double sqrt_s, const double pTV1, const double pTV2) const
 The number of events in \( p p \to WZ\) in a given \(p_{TV}\) bin, normalized to the SM prediction. From arXiv: 1712.01310 [hep-ph] and private communication. Implemented only in NPSMEFTd6 class. More...
 
virtual const double mutH (const double sqrt_s) const
 The ratio \(\mu_{tH}\) between the t-Higgs associated production cross-section in the current model and in the Standard Model. More...
 
virtual const double mutHgaga (const double sqrt_s) const
 
virtual const double muttHgagaZeeboost (const double sqrt_s) const
 The ratio \(\sigma(ttH)/\sigma(ttZ)\) in the \(H\to b\bar{b}\), \(Z\to e^+e^-\) channel channel in the current model and in the Standard Model. More...
 
virtual const double muttHptH_Hbb (const double sqrt_s) const
 
virtual const double muttHptH_Hgaga (const double sqrt_s) const
 
virtual const double muttHptH_Hmumu (const double sqrt_s) const
 
virtual const double muttHptH_Htautau (const double sqrt_s) const
 
virtual const double muttHptH_HWW (const double sqrt_s) const
 
virtual const double muttHptH_HZZ (const double sqrt_s) const
 
virtual const double muttHZbbboost (const double sqrt_s) const
 The ratio \(\sigma(ttH)/\sigma(ttZ)\) in the \(H,Z\to b\bar{b}\) channel in the current model and in the Standard Model. More...
 
virtual const double muVBFpVH_Hmumu (const double sqrt_s) const
 
virtual const double muVBFpVH_HZga (const double sqrt_s) const
 
virtual const double muVHcc (const double sqrt_s) const
 
virtual const double Mw () const
 The mass of the \(W\) boson, \(M_W\). More...
 
virtual const double N_nu () const
 The number of neutrinos dervied from the \(Z\) pole measurements, \(N_{\nu}\). More...
 
virtual const double NevLHCppee13 (const int i_bin) const
 Number of di-electron events at the LHC at 13 TeV. More...
 
virtual const double NevLHCppenu13 (const int i_bin) const
 Number of mono-electron events at the LHC at 13 TeV. More...
 
virtual const double NevLHCppmumu13 (const int i_bin) const
 Number of di-muon events at the LHC at 13 TeV. More...
 
virtual const double NevLHCppmunu13 (const int i_bin) const
 Number of mono-muon events at the LHC at 13 TeV. More...
 
virtual const double NevLHCpptaunu13 (const int i_bin) const
 Number of mono-tau events at the LHC at 13 TeV. More...
 
virtual const double NevLHCpptautau13 (const int i_bin) const
 Number of di-tau events at the LHC at 13 TeV. More...
 
 NPbase ()
 The default constructor. More...
 
virtual const double obliqueW () const
 The oblique parameter \(W\). More...
 
virtual const double obliqueY () const
 The oblique parameter \(Y\). More...
 
virtual int OutputOrder () const
 
virtual const double ppZHprobe (const double sqrt_s) const
 The direction constrained by \( p p \to Z H\) in the boosted regime, \(g_p^Z\). From arXiv:1807.01796 and the contribution to FCC CDR Vol 1. Implemented only in NPSMEFTd6 class. More...
 
virtual const double Qwemoller (const double q2, const double y) const
 
virtual const double Qwn () const
 
virtual const double Qwp () const
 
virtual const double R0_f (const Particle f) const
 The ratio \(R_\ell^0=\Gamma_{\mathrm{had}}/\Gamma_\ell\), \(R_q^0=\Gamma_q/\Gamma_{\mathrm{had}}\) and \(R_\nu^0=\Gamma_\nu/\Gamma_{\mathrm{had}}\), for charged leptons, quarks and neutrinos, respectively. More...
 
virtual const double R_inv () const
 The ratio of the invisible and leptonic (electron) decay widths of the \(Z\) boson, \(R_{inv}\). More...
 
virtual const gslpp::complex rhoZ_f (const Particle f) const
 The effective neutral-current coupling \(\rho_Z^f\) including SM plus NP contributions. More...
 
virtual const double Ruc () const
 The ratio of the \(Z\to u\bar{u} + Z\to c\bar{c}\) width to the \(Z\)-boson hadronic width. More...
 
virtual const double RWc () const
 The ratio \(R_{W,c)=\Gamma(W\to c + X)/\Gamma(W\to had)\). More...
 
virtual const double RWlilj (const Particle li, const Particle lj) const
 The lepton universality ratio \(R_{W,l_i/l_j)=\Gamma(W\to l_i \nu_i)/\Gamma(W\to l_j \nu_j)\). More...
 
virtual const double RZlilj (const Particle li, const Particle lj) const
 The lepton universality ratio \(R_{Z,l_i/l_j)=\Gamma(Z\to l_i^+ l_i^-)/\Gamma(Z\to l_j^+ l_j^-)\). More...
 
virtual const double sigma0_had () const
 The cross section for the process \(e^+ e^-\to Z\to \mathrm{hadrons}\) at the \(Z\) pole, \(\sigma_h^0\). More...
 
virtual const double sigmaSM_ee (const double pol_e, const double pol_p, const double s, const double cosmin, const double cosmax) const
 
virtual const double sin2thetaEff (const Particle f) const
 The leptonic effective weak mixing angle \(\sin^2\theta_{\rm eff}^{\rm lept}\) at the the \(Z\) pole. More...
 
virtual const double STXS0_qqH (const double sqrt_s) const
 The STXS0 bin \(pp \to H qq\). More...
 
virtual const double STXS12_BrH4lRatio () const
 The STXS BR \( H \to 4l \), \(l=e,\mu\). More...
 
virtual const double STXS12_BrHbbRatio () const
 The STXS BR \( H \to bb \). More...
 
virtual const double STXS12_BrHevmuvRatio () const
 The STXS BR \( H \to e\nu \mu\nu \). More...
 
virtual const double STXS12_BrHgagaRatio () const
 The STXS BR \( H \to \gamma \gamma \). More...
 
virtual const double STXS12_ggH_mjj0_350_pTH0_60_Nj1 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j \geq 1,~m_{jj}[GeV]<350,~p_{TH} [GeV]<60\). More...
 
virtual const double STXS12_ggH_mjj0_350_pTH0_60_Nj2 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j \geq 2,~m_{jj}[GeV]<350,~p_{TH} [GeV]<60\). More...
 
virtual const double STXS12_ggH_mjj0_350_pTH120_200_Nj2 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j \geq 2,~m_{jj}[GeV]<350,~120<p_{TH} [GeV]<200\). More...
 
virtual const double STXS12_ggH_mjj0_350_pTH60_120_Nj2 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j \geq 2,~m_{jj}[GeV]<350,~60<p_{TH} [GeV]<120\). More...
 
virtual const double STXS12_ggH_mjj350_700_pTH0_200_Nj2 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH} [GeV]<200\). More...
 
virtual const double STXS12_ggH_mjj350_700_pTH0_200_ptHjj0_25_Nj2 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH} [GeV]<200,~p_{THjj}[GeV]<25\). More...
 
virtual const double STXS12_ggH_mjj350_700_pTH0_200_ptHjj25_Inf_Nj2 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH} [GeV]<200,~25<p_{THjj}[GeV]\). More...
 
virtual const double STXS12_ggH_mjj700_Inf_pTH0_200_Nj2 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j \geq 2,~700<m_{jj}[GeV],~p_{TH} [GeV]<200\). More...
 
virtual const double STXS12_ggH_mjj700_Inf_pTH0_200_ptHjj0_25_Nj2 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j \geq 2,~700<m_{jj}[GeV],~p_{TH} [GeV]<200,~p_{THjj}[GeV]<25\). More...
 
virtual const double STXS12_ggH_mjj700_Inf_pTH0_200_ptHjj25_Inf_Nj2 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j \geq 2,~700<m_{jj}[GeV],~p_{TH} [GeV]<200,~25<p_{THjj}[GeV]\). More...
 
virtual const double STXS12_ggH_pTH0_10_Nj0 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j=0,~p_{TH} [GeV]<10\). More...
 
virtual const double STXS12_ggH_pTH0_60_Nj1 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j = 1,~p_{TH} [GeV]<60\). More...
 
virtual const double STXS12_ggH_pTH10_200_Nj0 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j = 0, 10<~p_{TH} [GeV]<200\). More...
 
virtual const double STXS12_ggH_pTH10_Inf_Nj0 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j=0,~10<p_{TH} [GeV]\). More...
 
virtual const double STXS12_ggH_pTH120_200_Nj1 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j = 1,~120<p_{TH} [GeV]<200\). More...
 
virtual const double STXS12_ggH_pTH200_300 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(~200<p_{TH} [GeV]<300\). More...
 
virtual const double STXS12_ggH_pTH200_300_Nj01 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j\leq 1,~200<p_{TH} [GeV]<300\). More...
 
virtual const double STXS12_ggH_pTH300_450 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(~300<p_{TH} [GeV]<450\). More...
 
virtual const double STXS12_ggH_pTH300_450_Nj01 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j\leq 1,~300<p_{TH} [GeV]<450\). More...
 
virtual const double STXS12_ggH_pTH450_650 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(450<~p_{TH} [GeV]<650\). More...
 
virtual const double STXS12_ggH_pTH450_650_Nj01 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j\leq 1,~450<p_{TH} [GeV]<650\). More...
 
virtual const double STXS12_ggH_pTH450_Inf (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(~p_{TH} [GeV]>450\). More...
 
virtual const double STXS12_ggH_pTH60_120_Nj1 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j = 1,~60<p_{TH} [GeV]<120\). More...
 
virtual const double STXS12_ggH_pTH650_Inf (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(~p_{TH} [GeV]>650\). More...
 
virtual const double STXS12_ggH_pTH650_Inf_Nj01 (const double sqrt_s) const
 The STXS bin \(gg \to H\), \(N_j\leq 1,650<p_{TH} [GeV]\). More...
 
virtual const double STXS12_ggHll_pTV0_75 (const double sqrt_s) const
 The STXS bin \(gg \to H\ell\ell\), \(p_{TV}[GeV]<75\). More...
 
virtual const double STXS12_ggHll_pTV150_250_Nj0 (const double sqrt_s) const
 The STXS bin \(gg \to H\ell\ell\), \(N_j = 0,~150<p_{TV}[GeV]<250\). More...
 
virtual const double STXS12_ggHll_pTV150_250_Nj1 (const double sqrt_s) const
 The STXS bin \(gg \to H\ell\ell\), \(N_j = 1,~150<p_{TV}[GeV]<250\). More...
 
virtual const double STXS12_ggHll_pTV250_Inf (const double sqrt_s) const
 The STXS bin \(gg \to H\ell\ell\), \(250 < p_{TV}[GeV]\). More...
 
virtual const double STXS12_ggHll_pTV75_150 (const double sqrt_s) const
 The STXS bin \(gg \to H\ell\ell\), \(75<p_{TV}[GeV]<150\). More...
 
virtual const double STXS12_qqHll_pTV0_150 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\ell\), \(0<p_{TV}<150[GeV]\). More...
 
virtual const double STXS12_qqHll_pTV0_75 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\ell\), \(p_{TV}[GeV]<75\). More...
 
virtual const double STXS12_qqHll_pTV150_250_Nj0 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\ell\), \(N_j = 0,~150<p_{TV}[GeV]<250\). More...
 
virtual const double STXS12_qqHll_pTV150_250_Nj1 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\ell\), \(N_j \geq 1,~150<p_{TV}[GeV]<250\). More...
 
virtual const double STXS12_qqHll_pTV250_400 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\ell\), \(250<p_{TV}<400[GeV]\). More...
 
virtual const double STXS12_qqHll_pTV250_Inf (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\ell\), \(250<p_{TV}[GeV]\). More...
 
virtual const double STXS12_qqHll_pTV400_Inf (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\ell\), \(400<p_{TV}[GeV]\). More...
 
virtual const double STXS12_qqHll_pTV75_150 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\ell\), \(75<p_{TV}[GeV]<150\). More...
 
virtual const double STXS12_qqHlv_pTV0_150 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\nu\), \(0<p_{TV}<150[GeV]\). More...
 
virtual const double STXS12_qqHlv_pTV0_75 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\nu\), \(p_{TV}[GeV]<75\). More...
 
virtual const double STXS12_qqHlv_pTV150_250_Nj0 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\nu\), \(N_j = 0,~150<p_{TV}[GeV]<250\). More...
 
virtual const double STXS12_qqHlv_pTV150_250_Nj1 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\nu\), \(N_j \geq 1,~150<p_{TV}[GeV]<250\). More...
 
virtual const double STXS12_qqHlv_pTV250_400 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\nu\), \(250<p_{TV}<400[GeV]\). More...
 
virtual const double STXS12_qqHlv_pTV250_Inf (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\nu\), \(250<p_{TV}[GeV]\). More...
 
virtual const double STXS12_qqHlv_pTV400_Inf (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\nu\), \(400<p_{TV}[GeV]\). More...
 
virtual const double STXS12_qqHlv_pTV75_150 (const double sqrt_s) const
 The STXS bin \(qq \to H\ell\nu\), \(75<p_{TV}[GeV]<150\). More...
 
virtual const double STXS12_qqHqq_mjj0_60_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~m_{jj}[GeV]<60\). More...
 
virtual const double STXS12_qqHqq_mjj1000_1500_pTH0_200_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~1000<m_{jj}[GeV]<1500,~p_{TH}[GeV]<200\). More...
 
virtual const double STXS12_qqHqq_mjj1000_Inf_pTH200_Inf_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~1000<m_{jj}[GeV],~p_{TH}[GeV]>200\). More...
 
virtual const double STXS12_qqHqq_mjj120_350_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~120<m_{jj}[GeV]<350\). More...
 
virtual const double STXS12_qqHqq_mjj1500_Inf_pTH0_200_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~1500<m_{jj}[GeV],~p_{TH}[GeV]<200\). More...
 
virtual const double STXS12_qqHqq_mjj350_1000_pTH200_Inf_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~350<m_{jj}[GeV]<1000,~p_{TH}[GeV]>200\). More...
 
virtual const double STXS12_qqHqq_mjj350_700_pTH0_200_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH}[GeV]<200\). More...
 
virtual const double STXS12_qqHqq_mjj350_700_pTH0_200_pTHjj0_25_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH}[GeV]<200,~p_{THjj}[GeV]<25\). More...
 
virtual const double STXS12_qqHqq_mjj350_700_pTH0_200_pTHjj25_Inf_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH}[GeV]<200,~25<p_{THjj}[GeV]\). More...
 
virtual const double STXS12_qqHqq_mjj350_Inf_pTH200_Inf_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~350<m_{jj}[GeV],~200<p_{TH}[GeV]\). More...
 
virtual const double STXS12_qqHqq_mjj60_120_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~60<m_{jj}[GeV]<120\). More...
 
virtual const double STXS12_qqHqq_mjj700_1000_pTH0_200_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~700<m_{jj}[GeV]<1000,~p_{TH}[GeV]<200\). More...
 
virtual const double STXS12_qqHqq_mjj700_Inf_pTH0_200_pTHjj0_25_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~700<m_{jj}[GeV],~p_{TH}[GeV]<200,~p_{THjj}[GeV]<25\). More...
 
virtual const double STXS12_qqHqq_mjj700_Inf_pTH0_200_pTHjj25_Inf_Nj2 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~700<m_{jj}[GeV],~p_{TH}[GeV]<200,~25<p_{THjj}[GeV]\). More...
 
virtual const double STXS12_qqHqq_Nj0 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j = 0\). More...
 
virtual const double STXS12_qqHqq_Nj1 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j = 1\). More...
 
virtual const double STXS12_qqHqq_VH_veto_Nj01 (const double sqrt_s) const
 The STXS bin \(qq \to Hqq\), \(N_j = 0,1\) VH-veto Ref. 2402.05742. More...
 
virtual const double STXS12_tH (const double sqrt_s) const
 The STXS bin \(pp \to tH\). More...
 
virtual const double STXS12_ttH_pTH0_60 (const double sqrt_s) const
 The STXS bin \(pp \to ttH\), \(p_{TH}[GeV]<60\). More...
 
virtual const double STXS12_ttH_pTH120_200 (const double sqrt_s) const
 The STXS bin \(pp \to ttH\), \(120<p_{TH}[GeV]<200\). More...
 
virtual const double STXS12_ttH_pTH200_300 (const double sqrt_s) const
 The STXS bin \(pp \to ttH\), \(200<p_{TH}[GeV]<300\). More...
 
virtual const double STXS12_ttH_pTH300_450 (const double sqrt_s) const
 The STXS bin \(pp \to ttH\), \(300<p_{TH}[GeV]<450\). More...
 
virtual const double STXS12_ttH_pTH300_Inf (const double sqrt_s) const
 The STXS bin \(pp \to ttH\), \(300<p_{TH}[GeV]\). More...
 
virtual const double STXS12_ttH_pTH450_Inf (const double sqrt_s) const
 The STXS bin \(pp \to ttH\), \(450<p_{TH}[GeV]\). More...
 
virtual const double STXS12_ttH_pTH60_120 (const double sqrt_s) const
 The STXS bin \(pp \to ttH\), \(60<p_{TH}[GeV]<120\). More...
 
virtual const double STXS_ggH0j (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_ggH1j_pTH_0_60 (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_ggH1j_pTH_120_200 (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_ggH1j_pTH_200 (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_ggH1j_pTH_60_120 (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_ggH2j_pTH_0_200 (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_ggH2j_pTH_0_60 (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_ggH2j_pTH_120_200 (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_ggH2j_pTH_200 (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_ggH2j_pTH_60_120 (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_ggH_VBFtopo_j3 (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_ggH_VBFtopo_j3v (const double sqrt_s) const
 The STXS bin \(gg \to H\). More...
 
virtual const double STXS_qqHll_pTV_0_150 (const double sqrt_s) const
 The STXS bin \(qq \to H \ell \ell\). More...
 
virtual const double STXS_qqHll_pTV_150_250 (const double sqrt_s) const
 The STXS bin \(qq \to H \ell \ell\). More...
 
virtual const double STXS_qqHll_pTV_150_250_0j (const double sqrt_s) const
 The STXS bin \(qq \to H \ell \ell\). More...
 
virtual const double STXS_qqHll_pTV_150_250_1j (const double sqrt_s) const
 The STXS bin \(qq \to H \ell \ell\). More...
 
virtual const double STXS_qqHll_pTV_250 (const double sqrt_s) const
 The STXS bin \(qq \to H \ell \ell\). More...
 
virtual const double STXS_qqHlv_pTV_0_150 (const double sqrt_s) const
 The STXS bin \(qq \to H \ell \nu\). More...
 
virtual const double STXS_qqHlv_pTV_0_250 (const double sqrt_s) const
 The STXS bin \(qq \to H \ell \nu\). More...
 
virtual const double STXS_qqHlv_pTV_150_250_0j (const double sqrt_s) const
 The STXS bin \(qq \to H \ell \nu\). More...
 
virtual const double STXS_qqHlv_pTV_150_250_1j (const double sqrt_s) const
 The STXS bin \(qq \to H \ell \nu\). More...
 
virtual const double STXS_qqHlv_pTV_250 (const double sqrt_s) const
 The STXS bin \(qq \to H \ell \nu\). More...
 
virtual const double STXS_qqHqq_nonVHtopo (const double sqrt_s) const
 The STXS bin \(qq \to H qq\). More...
 
virtual const double STXS_qqHqq_pTj_200 (const double sqrt_s) const
 The STXS bin \(qq \to H qq\). More...
 
virtual const double STXS_qqHqq_Rest (const double sqrt_s) const
 The STXS bin \(qq \to H qq\). More...
 
virtual const double STXS_qqHqq_VBFtopo_j3 (const double sqrt_s) const
 The STXS bin \(qq \to H qq\). More...
 
virtual const double STXS_qqHqq_VBFtopo_j3v (const double sqrt_s) const
 The STXS bin \(qq \to H qq\). More...
 
virtual const double STXS_qqHqq_VBFtopo_Rest (const double sqrt_s) const
 The STXS bin \(qq \to H qq\). More...
 
virtual const double STXS_qqHqq_VHtopo (const double sqrt_s) const
 The STXS bin \(qq \to H qq\). More...
 
virtual const double STXS_ttHtH (const double sqrt_s) const
 The STXS bin \( ttH + tH \). More...
 
virtual const double STXS_WHqqHqq_pTj1_200 (const double sqrt_s) const
 The STXS bin \( qq \to WH \to H qq \). More...
 
virtual const double STXS_WHqqHqq_Rest (const double sqrt_s) const
 The STXS bin \( qq \to WH \to H qq \). More...
 
virtual const double STXS_WHqqHqq_VBFtopo_j3 (const double sqrt_s) const
 The STXS bin \( qq \to WH \to H qq \). More...
 
virtual const double STXS_WHqqHqq_VBFtopo_j3v (const double sqrt_s) const
 The STXS bin \( qq \to WH \to H qq \). More...
 
virtual const double STXS_WHqqHqq_VH2j (const double sqrt_s) const
 The STXS bin \( qq \to WH \to H qq \). More...
 
virtual const double STXS_ZHqqHqq_pTj1_200 (const double sqrt_s) const
 The STXS bin \( qq \to ZH \to H qq \). More...
 
virtual const double STXS_ZHqqHqq_Rest (const double sqrt_s) const
 The STXS bin \( qq \to ZH \to H qq \). More...
 
virtual const double STXS_ZHqqHqq_VBFtopo_j3 (const double sqrt_s) const
 The STXS bin \( qq \to ZH \to H qq \). More...
 
virtual const double STXS_ZHqqHqq_VBFtopo_j3v (const double sqrt_s) const
 The STXS bin \( qq \to ZH \to H qq \). More...
 
virtual const double STXS_ZHqqHqq_VH2j (const double sqrt_s) const
 The STXS bin \( qq \to ZH \to H qq \). More...
 
virtual const double TauLFU_gmuge () const
 
virtual const double TauLFU_gtauge () const
 
virtual const double TauLFU_gtaugmu () const
 
virtual const double TauLFU_gtaugmuK () const
 
virtual const double TauLFU_gtaugmuPi () const
 
virtual bool Update (const std::map< std::string, double > &DPars)
 The update method for NPbase. More...
 
virtual const double xseeWW (const double sqrt_s) const
 Total \(e^+ e^- \to W^+ W^- \to jj \ell \nu\) cross section in pb, with \(\ell= e, \mu\). More...
 
virtual const double xseeWW4fLEP2 (const double sqrt_s, const int fstate) const
 The cross section in pb for \(e^+ e^- \to W^+ W^- \to 4f \), with \( 4f = 0 (jjjj), 1 (e v jj), 2 (mu v jj), 3 (tau v jj), 4 (e v e v), 5 (mu v mu v), 6 (tau v tau v), 7 (e v mu v), 8 (e v tau v), 9 (mu v tau v), 10 (l v jj), 11 (l v l v) \) the different fermion final states for C.O.M. energies in 188-208 GeV. From arXiv: 1606.06693 [hep-ph]. Defined only for the NPSMEFTd6 class. More...
 
virtual const double xseeWWhadLEP2 (const double sqrt_s) const
 The cross section in pb for \(e^+ e^- \to W^+ W^- \to j j j j\), summing over all final states for C.O.M. energies in 188-208 GeV. From arXiv: 1606.06693 [hep-ph]. Defined only for the NPSMEFTd6 class. More...
 
virtual const double xseeWWleptLEP2 (const double sqrt_s) const
 The cross section in pb for \(e^+ e^- \to W^+ W^- \to \ell \nu \ell \nu\), summing over all final states for C.O.M. energies in 188-208 GeV. From arXiv: 1606.06693 [hep-ph]. Defined only for the NPSMEFTd6 class. More...
 
virtual const double xseeWWsemilLEP2 (const double sqrt_s) const
 The cross section in pb for \(e^+ e^- \to W^+ W^- \to \ell \nu j j\), summing over all final states for C.O.M. energies in 188-208 GeV. From arXiv: 1606.06693 [hep-ph]. Defined only for the NPSMEFTd6 class. More...
 
virtual const double xseeWWtotLEP2 (const double sqrt_s) const
 The total cross section in pb for \(e^+ e^- \to W^+ W^-\), summing over all final states for C.O.M. energies in 188-208 GeV. From arXiv: 1606.06693 [hep-ph]. Defined only for the NPSMEFTd6 class. More...
 
- Public Member Functions inherited from StandardModel
gslpp::complex AH_f (const double tau) const
 Fermionic loop function entering in the calculation of the effective \(Hgg\) and \(H\gamma\gamma\) couplings. More...
 
gslpp::complex AH_W (const double tau) const
 W loop function entering in the calculation of the effective \(H\gamma\gamma\) coupling. More...
 
gslpp::complex AHZga_f (const double tau, const double lambda) const
 Fermionic loop function entering in the calculation of the effective \(HZ\gamma\) coupling. More...
 
gslpp::complex AHZga_W (const double tau, const double lambda) const
 W loop function entering in the calculation of the effective \(HZ\gamma\) coupling. More...
 
const double Ale (double mu, orders order, bool Nf_thr=true) const
 The running electromagnetic coupling \(\alpha_e(\mu)\) in the \(\overline{MS}\) scheme. More...
 
const double ale_OS (const double mu, orders order=FULLNLO) const
 The running electromagnetic coupling \(\alpha(\mu)\) in the on-shell scheme. More...
 
const double Als (const double mu, const int Nf_in, const orders order=FULLNLO) const
 Computes the running strong coupling \(\alpha_s(\mu)\) with \(N_f\) active flavours in the \(\overline{\mathrm{MS}}\) scheme. In the cases of LO, NLO and FULLNLO, the coupling is computed with AlsWithInit(). On the other hand, in the cases of NNLO and FULLNNLO, the coupling is computed with AlsWithLambda(). More...
 
const double Als (const double mu, const orders order, const bool Nf_thr, const bool qed_flag) const
 The running QCD coupling \(\alpha(\mu)\) in the \(\overline{MS}\) scheme including QED corrections. More...
 
const double Als (const double mu, const orders order=FULLNLO, const bool Nf_thr=true) const
 
const double Alstilde5 (const double mu) const
 The value of \(\frac{\alpha_s^{\mathrm{FULLNLO}}}{4\pi}\) at any scale \(\mu\) with the number of flavours \(n_f = 4\) and full EW corrections. More...
 
const double Beta_e (int nm, unsigned int nf) const
 QED beta function coefficients - eq. (36) hep-ph/0512066. More...
 
const double Beta_s (int nm, unsigned int nf) const
 QCD beta function coefficients including QED corrections - eq. (36) hep-ph/0512066. More...
 
virtual const double BrHtobb () const
 The Br \((H\to b \bar{b})\) in the Standard Model. More...
 
virtual const double BrHtocc () const
 The Br \((H\to c \bar{c})\) in the Standard Model. More...
 
virtual const double BrHtogaga () const
 The Br \((H\to \gamma \gamma)\) in the Standard Model. More...
 
virtual const double BrHtogg () const
 The Br \(\(H\to gg)\) in the Standard Model. More...
 
virtual const double BrHtomumu () const
 The Br \((H\to \mu^+ \mu^-)\) in the Standard Model. More...
 
virtual const double BrHtoss () const
 The Br \((H\to s \bar{s})\) in the Standard Model. More...
 
virtual const double BrHtotautau () const
 The Br \((H\to \tau^+ \tau^-)\) in the Standard Model. More...
 
virtual const double BrHtoWWstar () const
 The Br \((H\to W W^*)\) in the Standard Model. More...
 
virtual const double BrHtoZga () const
 The Br \((H\to Z \gamma)\) in the Standard Model. More...
 
virtual const double BrHtoZZstar () const
 The Br \((H\to Z Z^*)\) in the Standard Model. More...
 
const double c02 () const
 The square of the cosine of the weak mixing angle \(c_0^2\) defined without weak radiative corrections. More...
 
virtual bool CheckFlags () const
 A method to check the sanity of the set of model flags. More...
 
bool checkSMparamsForEWPO ()
 A method to check whether the parameters relevant to the EWPO are updated. More...
 
const double computeBrHto4f () const
 The Br \((H\to 4f)\) in the Standard Model. More...
 
const double computeBrHto4l2 () const
 The Br \((H\to 4l)\) \(l=e,\mu\) in the Standard Model. More...
 
const double computeBrHto4l3 () const
 The Br \((H\to 4l)\) \(l=e,\mu,\tau\) in the Standard Model. More...
 
const double computeBrHto4q () const
 The Br \((H\to 4q)\) in the Standard Model. More...
 
const double computeBrHto4v () const
 The Br \((H\to 4\nu)\) in the Standard Model. More...
 
const double computeBrHtobb () const
 The Br \((H\to bb)\) in the Standard Model. More...
 
const double computeBrHtocc () const
 The Br \((H\to cc)\) in the Standard Model. More...
 
const double computeBrHtoevmuv () const
 The Br \((H\to e \nu \mu \nu)\) in the Standard Model. More...
 
const double computeBrHtogaga () const
 The Br \((H\to\gamma\gamma)\) in the Standard Model. More...
 
const double computeBrHtogg () const
 The Br \((H\to gg)\) in the Standard Model. More...
 
const double computeBrHtollvv2 () const
 The Br \((H\to l^+ l^- \nu \nu)\) \(l=e,\mu\) in the Standard Model. More...
 
const double computeBrHtollvv3 () const
 The Br \((H\to l^+ l^- \nu \nu)\) \(l=e,\mu,\tau\) in the Standard Model. More...
 
const double computeBrHtomumu () const
 The Br \((H\to \mu\mu)\) in the Standard Model. More...
 
const double computeBrHtoss () const
 The Br \((H\to ss)\) in the Standard Model. More...
 
const double computeBrHtotautau () const
 The Br \((H\to \tau\tau)\) in the Standard Model. More...
 
const double computeBrHtoWW () const
 The Br \((H\to WW)\) in the Standard Model. More...
 
const double computeBrHtoZga () const
 The Br \((H\to Z\gamma)\) in the Standard Model. More...
 
const double computeBrHtoZZ () const
 The Br \((H\to ZZ)\) in the Standard Model. More...
 
void ComputeDeltaR_rem (const double Mw_i, double DeltaR_rem[orders_EW_size]) const
 A method to collect \(\Delta r_{\mathrm{rem}}\) computed via subclasses. More...
 
void ComputeDeltaRho (const double Mw_i, double DeltaRho[orders_EW_size]) const
 A method to collect \(\Delta\rho\) computed via subclasses. More...
 
const double computeGammaHgaga_tt () const
 The top loop contribution to \(H\to\gamma\gamma\) in the Standard Model. More...
 
const double computeGammaHgaga_tW () const
 The mixed \(t-W\) loop contribution to \(H\to\gamma\gamma\) in the Standard Model. More...
 
const double computeGammaHgaga_WW () const
 The \(W\) loop contribution to \(H\to\gamma\gamma\) in the Standard Model. More...
 
const double computeGammaHgg_bb () const
 The bottom loop contribution to \(H\to gg\) in the Standard Model. More...
 
const double computeGammaHgg_tb () const
 The top-bottom interference contribution to \(H\to gg\) in the Standard Model. More...
 
const double computeGammaHgg_tt () const
 The top loop contribution to \(H\to gg\) in the Standard Model. More...
 
const double computeGammaHTotal () const
 The Higgs total width in the Standard Model. More...
 
const double computeGammaHZga_tt () const
 The top loop contribution to \(H\to Z\gamma\) in the Standard Model. More...
 
const double computeGammaHZga_tW () const
 The mixed \(t-W\) loop contribution to \(H\to Z\gamma\) in the Standard Model. More...
 
const double computeGammaHZga_WW () const
 The \(W\) loop contribution to \(H\to Z\gamma\) in the Standard Model. Currently it returns the value of tab 41 in ref. [Heinemeyer:2013tqa]. More...
 
const double computeSigmabbH (const double sqrt_s) const
 The bbH production cross section in the Standard Model. More...
 
const double computeSigmaggH (const double sqrt_s) const
 The ggH cross section in the Standard Model. More...
 
const double computeSigmaggH_bb (const double sqrt_s) const
 The square of the bottom-quark contribution to the ggH cross section in the Standard Model. More...
 
const double computeSigmaggH_tb (const double sqrt_s) const
 The top-bottom interference contribution to the ggH cross section in the Standard Model. More...
 
const double computeSigmaggH_tt (const double sqrt_s) const
 The square of the top-quark contribution to the ggH cross section in the Standard Model. More...
 
const double computeSigmatHq (const double sqrt_s) const
 The tHq production cross section in the Standard Model. More...
 
const double computeSigmattH (const double sqrt_s) const
 The ttH production cross section in the Standard Model. More...
 
const double computeSigmaVBF (const double sqrt_s) const
 The VBF cross section in the Standard Model. More...
 
const double computeSigmaWF (const double sqrt_s) const
 The W fusion contribution \(\sigma_{WF}\) to higgs-production cross section in the Standard Model. More...
 
const double computeSigmaWH (const double sqrt_s) const
 The WH production cross section in the Standard Model. More...
 
const double computeSigmaZF (const double sqrt_s) const
 The Z fusion contribution \(\sigma_{ZF}\) to higgs-production cross section in the Standard Model. More...
 
const double computeSigmaZH (const double sqrt_s) const
 The ZH production cross section in the Standard Model. More...
 
const double computeSigmaZWF (const double sqrt_s) const
 The Z W interference fusion contribution \(\sigma_{ZWF}\) to higgs-production cross section in the Standard Model. More...
 
virtual const double cW2 () const
 
virtual const double cW2 (const double Mw_i) const
 The square of the cosine of the weak mixing angle in the on-shell scheme, denoted as \(c_W^2\). More...
 
virtual const double Dalpha5hMz () const
 The 5-quark contribution to the running of the em constant to the \(Z\) pole. \(\Delta\alpha_{had}^{(5)}(M_Z)\). More...
 
const double DeltaAlpha () const
 The total corrections to the electromagnetic coupling \(\alpha\) at the \(Z\)-mass scale, denoted as \(\Delta\alpha(M_Z^2)\). More...
 
const double DeltaAlphaL5q () const
 The sum of the leptonic and the five-flavour hadronic corrections to the electromagnetic coupling \(\alpha\) at the \(Z\)-mass scale, denoted as \(\Delta\alpha^{\ell+5q}(M_Z^2)\). More...
 
const double DeltaAlphaLepton (const double s) const
 Leptonic contribution to the electromagnetic coupling \(\alpha\), denoted as \(\Delta\alpha_{\mathrm{lept}}(s)\). More...
 
const double DeltaAlphaTop (const double s) const
 Top-quark contribution to the electromagnetic coupling \(\alpha\), denoted as \(\Delta\alpha_{\mathrm{top}}(s)\). More...
 
virtual const gslpp::complex deltaKappaZ_f (const Particle f) const
 Flavour non-universal vertex corrections to \(\kappa_Z^l\), denoted by \(\Delta\kappa_Z^l\). More...
 
virtual const double DeltaR () const
 The SM prediction for \(\Delta r\) derived from that for the \(W\) boson mass. More...
 
virtual const double DeltaRbar () const
 The SM prediction for \(\Delta \overline{r}\) derived from that for the \(W\)-boson mass. More...
 
virtual const gslpp::complex deltaRhoZ_f (const Particle f) const
 Flavour non-universal vertex corrections to \(\rho_Z^l\), denoted by \(\Delta\rho_Z^l\). More...
 
const double eeffsigma (const Particle f, const double pol_e, const double pol_p, const double s, const double cosmin, const double cosmax) const
 
const double eeffsigmaEbin (const double pol_e, const double pol_p, const double s, const double cosmin, const double cosmax) const
 
virtual const double epsilon1 () const
 The SM contribution to the epsilon parameter \(\varepsilon_1\). More...
 
virtual const double epsilon2 () const
 The SM contribution to the epsilon parameter \(\varepsilon_2\). More...
 
virtual const double epsilon3 () const
 The SM contribution to the epsilon parameter \(\varepsilon_3\). More...
 
virtual const double epsilonb () const
 The SM contribution to the epsilon parameter \(\varepsilon_b\). More...
 
gslpp::complex f_triangle (const double tau) const
 Loop function entering in the calculation of the effective \(Hgg\) and \(H\gamma\gamma\) couplings. More...
 
gslpp::complex g_triangle (const double tau) const
 Loop function entering in the calculation of the effective \(HZ\gamma\) coupling. More...
 
virtual const double Gamma_inv () const
 The invisible partial decay width of the \(Z\) boson, \(\Gamma_{\mathrm{inv}}\). More...
 
virtual const double Gamma_muon () const
 The computation of the muon decay. More...
 
virtual const double Gamma_tau_l_nunu (const Particle l) const
 The computation of the leptonic tau decays. More...
 
virtual const double GammaHtobb () const
 The \(\Gamma(H\to b \bar{b})\) in the Standard Model. More...
 
virtual const double GammaHtocc () const
 The \(\Gamma(H\to c \bar{c})\) in the Standard Model. More...
 
virtual const double GammaHtogaga () const
 The \(\Gamma(H\to \gamma \gamma)\) in the Standard Model. More...
 
virtual const double GammaHtogg () const
 The \(\Gamma(H\to gg)\) in the Standard Model. More...
 
virtual const double GammaHtomumu () const
 The \(\Gamma(H\to \mu^+ \mu^-)\) in the Standard Model. More...
 
virtual const double GammaHtoss () const
 The \(\Gamma(H\to s \bar{s})\) in the Standard Model. More...
 
virtual const double GammaHTot () const
 The total Higgs width \(\Gamma(H)\) in the Standard Model. More...
 
virtual const double GammaHtotautau () const
 The \(\Gamma(H\to \tau^+ \tau^-)\) in the Standard Model. More...
 
virtual const double GammaHtoWWstar () const
 The \(\Gamma(H\to W W^*)\) in the Standard Model. More...
 
virtual const double GammaHtoZga () const
 The \(\Gamma(H\to Z \gamma)\) in the Standard Model. More...
 
virtual const double GammaHtoZZstar () const
 The \(\Gamma(H\to Z Z^*)\) in the Standard Model. More...
 
virtual const double GammaZ (const Particle f) const
 The \(Z\to \ell\bar{\ell}\) partial decay width, \(\Gamma_\ell\). More...
 
const double getAle () const
 A get method to retrieve the fine-structure constant \(\alpha\). More...
 
const double getAlsMz () const
 A get method to access the value of \(\alpha_s(M_Z)\). More...
 
virtual const double getCBd () const
 The ratio of the absolute value of the $B_d$ mixing amplitude over the Standard Model value. More...
 
virtual const double getCBs () const
 The ratio of the absolute value of the $B_s$ mixing amplitude over the Standard Model value. More...
 
virtual const double getCCC1 () const
 A virtual implementation for the RealWeakEFTCC class. More...
 
virtual const double getCCC2 () const
 A virtual implementation for the RealWeakEFTCC class. More...
 
virtual const double getCCC3 () const
 A virtual implementation for the RealWeakEFTCC class. More...
 
virtual const double getCCC4 () const
 A virtual implementation for the RealWeakEFTCC class. More...
 
virtual const double getCCC5 () const
 A virtual implementation for the RealWeakEFTCC class. More...
 
virtual const double getCDMK () const
 The ratio of the real part of the $K$ mixing amplitude over the Standard Model value. More...
 
virtual const double getCepsK () const
 The ratio of the imaginary part of the $K$ mixing amplitude over the Standard Model value. More...
 
const CKMgetCKM () const
 A get method to retrieve the member object of type CKM. More...
 
const double getDAle5Mz () const
 A get method to retrieve the five-flavour hadronic contribution to the electromagnetic coupling, \(\Delta\alpha_{\mathrm{had}}^{(5)}(M_Z^2)\). More...
 
const double getDelGammaZ () const
 A get method to retrieve the theoretical uncertainty in \(\Gamma_Z\), denoted as \(\delta\,\Gamma_Z\). More...
 
const double getDelMw () const
 A get method to retrieve the theoretical uncertainty in \(M_W\), denoted as \(\delta\,M_W\). More...
 
const double getDelR0b () const
 A get method to retrieve the theoretical uncertainty in \(R_b^0\), denoted as \(\delta\,R_b^0\). More...
 
const double getDelR0c () const
 A get method to retrieve the theoretical uncertainty in \(R_c^0\), denoted as \(\delta\,R_c^0\). More...
 
const double getDelR0l () const
 A get method to retrieve the theoretical uncertainty in \(R_l^0\), denoted as \(\delta\,R_l^0\). More...
 
const double getDelSigma0H () const
 A get method to retrieve the theoretical uncertainty in \(\sigma_{Hadron}^0\), denoted as \(\delta\,\sigma_{Hadron}^0\). More...
 
const double getDelSin2th_b () const
 A get method to retrieve the theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{b}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{b}\). More...
 
const double getDelSin2th_l () const
 A get method to retrieve the theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{\rm lept}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{\rm lept}\). More...
 
const double getDelSin2th_q () const
 A get method to retrieve the theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{q\not = b,t}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{q\not = b,t}\). More...
 
const std::string getFlagKappaZ () const
 A method to retrieve the model flag KappaZ. More...
 
const std::string getFlagMw () const
 A method to retrieve the model flag Mw. More...
 
const std::string getFlagRhoZ () const
 A method to retrieve the model flag RhoZ. More...
 
const FlavourgetFlavour () const
 
const double getGF () const
 A get method to retrieve the Fermi constant \(G_\mu\). More...
 
const int getIterationNo () const
 
const ParticlegetLeptons (const QCD::lepton p) const
 A get method to retrieve the member object of a lepton. More...
 
virtual StandardModelMatchinggetMatching () const
 A get method to access the member reference of type StandardModelMatching. More...
 
virtual const double getMHl () const
 A get method to retrieve the Higgs mass \(m_h\). More...
 
virtual const double getmq (const QCD::quark q, const double mu) const
 The MSbar running quark mass computed at NLO. More...
 
const double getMuw () const
 A get method to retrieve the matching scale \(\mu_W\) around the weak scale. More...
 
const double getMw () const
 A get method to access the input value of the mass of the \(W\) boson \(M_W\). More...
 
EWSMApproximateFormulaegetMyApproximateFormulae () const
 A get method to retrieve the member pointer of type EWSMApproximateFormulae. More...
 
EWSMcachegetMyEWSMcache () const
 A get method to retrieve the member pointer of type EWSMcache. More...
 
LeptonFlavourgetMyLeptonFlavour () const
 
EWSMOneLoopEWgetMyOneLoopEW () const
 A get method to retrieve the member pointer of type EWSMOneLoopEW,. More...
 
EWSMThreeLoopEWgetMyThreeLoopEW () const
 
EWSMThreeLoopEW2QCDgetMyThreeLoopEW2QCD () const
 
EWSMThreeLoopQCDgetMyThreeLoopQCD () const
 
EWSMTwoFermionsLEP2getMyTwoFermionsLEP2 () const
 A get method to retrieve the member pointer of type EWSMTwoFermionsLEP2. More...
 
EWSMTwoLoopEWgetMyTwoLoopEW () const
 
EWSMTwoLoopQCDgetMyTwoLoopQCD () const
 
const double getMz () const
 A get method to access the mass of the \(Z\) boson \(M_Z\). More...
 
virtual const double getPhiBd () const
 Half the relative phase of the $B_d$ mixing amplitude w.r.t. the Standard Model one. More...
 
virtual const double getPhiBs () const
 Half the relative phase of the $B_s$ mixing amplitude w.r.t. the Standard Model one. More...
 
const gslpp::matrix< gslpp::complex > getUPMNS () const
 A get method to retrieve the object of the PMNS matrix. More...
 
const gslpp::matrix< gslpp::complex > getVCKM () const
 A get method to retrieve the CKM matrix. More...
 
const gslpp::matrix< gslpp::complex > & getYd () const
 A get method to retrieve the Yukawa matrix of the down-type quarks, \(Y_d\). More...
 
const gslpp::matrix< gslpp::complex > & getYe () const
 A get method to retrieve the Yukawa matrix of the charged leptons, \(Y_e\). More...
 
const gslpp::matrix< gslpp::complex > & getYn () const
 A get method to retrieve the Yukawa matrix of the neutrinos, \(Y_\nu\). More...
 
const gslpp::matrix< gslpp::complex > & getYu () const
 A get method to retrieve the Yukawa matrix of the up-type quarks, \(Y_u\). More...
 
gslpp::complex I_triangle_1 (const double tau, const double lambda) const
 Loop function entering in the calculation of the effective \(HZ\gamma\) coupling. More...
 
gslpp::complex I_triangle_2 (const double tau, const double lambda) const
 Loop function entering in the calculation of the effective \(HZ\gamma\) coupling. More...
 
virtual bool Init (const std::map< std::string, double > &DPars)
 A method to initialize the model parameters. More...
 
virtual bool InitializeModel ()
 A method to initialize the model. More...
 
const double intMLL2eeeeus2 (const double s, const double t0, const double t1) const
 
const double intMLR2eeeets2 (const double s, const double t0, const double t1) const
 
const double intMLRtilde2eeeest2 (const double s, const double t0, const double t1) const
 
const double intMRR2eeeeus2 (const double s, const double t0, const double t1) const
 
const bool IsFlagNoApproximateGammaZ () const
 A method to retrieve the model flag NoApproximateGammaZ. More...
 
const bool IsFlagWithoutNonUniversalVC () const
 A method to retrieve the model flag WithoutNonUniversalVC. More...
 
const bool isSMSuccess () const
 A get method to retrieve the success status of the Standard Model update and matching. More...
 
const double MLL2eeff (const Particle f, const double s, const double t) const
 
const double MLR2eeff (const Particle f, const double s) const
 
const double MRL2eeff (const Particle f, const double s) const
 
const double MRR2eeff (const Particle f, const double s, const double t) const
 
const double Mw_tree () const
 The tree-level mass of the \(W\) boson, \(M_W^{\mathrm{tree}}\). More...
 
const double MwbarFromMw (const double Mw) const
 A method to convert the \(W\)-boson mass in the experimental/running-width scheme to that in the complex-pole/fixed-width scheme. More...
 
const double MwFromMwbar (const double Mwbar) const
 A method to convert the \(W\)-boson mass in the complex-pole/fixed-width scheme to that in the experimental/running-width scheme. More...
 
double Mzbar () const
 The \(Z\)-boson mass \(\overline{M}_Z\) in the complex-pole/fixed-width scheme. More...
 
virtual bool PreUpdate ()
 The pre-update method for StandardModel. More...
 
virtual const double rho_GammaW (const Particle fi, const Particle fj) const
 EW radiative corrections to the width of \(W \to f_i \bar{f}_j\), denoted as \(\rho^W_{ij}\). More...
 
const double s02 () const
 The square of the sine of the weak mixing angle \(s_0^2\) defined without weak radiative corrections. More...
 
void setCKM (const CKM &CKMMatrix)
 A set method to change the CKM matrix. More...
 
void setFlagCacheInStandardModel (bool FlagCacheInStandardModel)
 A set method to change the model flag CacheInStandardModel of StandardModel. More...
 
void setFlagNoApproximateGammaZ (bool FlagNoApproximateGammaZ)
 
bool setFlagSigmaForAFB (const bool flagSigmaForAFB_i)
 
bool setFlagSigmaForR (const bool flagSigmaForR_i)
 
virtual bool setFlagStr (const std::string name, const std::string value)
 A method to set a flag of StandardModel. More...
 
void setRequireCKM (bool requireCKM)
 A set method to change the value of requireCKM. More...
 
void setSMSuccess (bool success) const
 A set method to change the success status of the Standard Model update and matching. More...
 
void setYd (const gslpp::matrix< gslpp::complex > &Yd)
 A set method to set the Yukawa matrix of the down-type quarks, \(Y_d\). More...
 
void setYe (const gslpp::matrix< gslpp::complex > &Ye)
 A set method to set the Yukawa matrix of the charged leptons, \(Y_e\). More...
 
void setYu (const gslpp::matrix< gslpp::complex > &Yu)
 A set method to set the Yukawa matrix of the up-type quarks, \(Y_u\). More...
 
virtual const double SigmaeeHee (const double sqrt_s, const double Pe, const double Pp) const
 The \(\sigma(e^+ e^- \to e^+ e^- H)\) in the Standard Model. More...
 
virtual const double SigmaeeHvv (const double sqrt_s, const double Pe, const double Pp) const
 The \(\sigma(e^+ e^- \to \nu \bar{\nu} H)\) in the Standard Model. More...
 
virtual const double SigmaeeZH (const double sqrt_s, const double Pe, const double Pp) const
 The \(\sigma(e^+ e^- \to Z H)\) in the Standard Model. More...
 
 StandardModel ()
 The default constructor. More...
 
const double sW2 () const
 
virtual const double sW2 (const double Mw_i) const
 The square of the sine of the weak mixing angle in the on-shell scheme, denoted as \(s_W^2\). More...
 
const double sW2_MSbar_Approx () const
 The (approximated formula for the) square of the sine of the weak mixing angle in the MSbar scheme, denoted as \(\hat{s}_{W}^2\). See: PDG 22, R.L. Workman et al. (Particle Data Group), Prog. Theor. Exp. Phys. 2022, 083C01 (2022) More...
 
const double sW2_ND () const
 The square of the sine of the weak mixing angle in the MSbar-ND scheme (w/o decoupling $\alpha\ln(m_t/M_Z)$ terms), denoted as \(\hat{s}_{ND}^2\). See: PDG 22, R.L. Workman et al. (Particle Data Group), Prog. Theor. Exp. Phys. 2022, 083C01 (2022) (eq. 10.13a/10.13b) More...
 
virtual const double ThetaLnuN () const
 The effective neutrino nucleon LH parameter: ThetaLnuN. More...
 
virtual const double ThetaRnuN () const
 The effective neutrino nucleon RH parameter: ThetaRnuN. More...
 
const double tovers2 (const double cosmin, const double cosmax) const
 
const double uovers2 (const double cosmin, const double cosmax) const
 
const double v () const
 The Higgs vacuum expectation value. More...
 
virtual ~StandardModel ()
 The default destructor. More...
 
- Public Member Functions inherited from QCD
const double AboveTh (const double mu) const
 The active flavour threshold above the scale \(\mu\) as defined in QCD::Thresholds(). More...
 
void addParameters (std::vector< std::string > params_i)
 A method to add parameters that are specific to only one set of observables. More...
 
const double Als (const double mu, const int Nf_in, const orders order=FULLNLO) const
 Computes the running strong coupling \(\alpha_s(\mu)\) with \(N_f\) active flavours in the \(\overline{\mathrm{MS}}\) scheme. In the cases of LO, NLO and FULLNLO, the coupling is computed with AlsWithInit(). On the other hand, in the cases of NNLO and FULLNNLO, the coupling is computed with AlsWithLambda(). More...
 
const double Als (const double mu, const orders order=FULLNLO, const bool Nf_thr=true) const
 
const double Als4 (const double mu) const
 The value of \(\alpha_s^{\mathrm{FULLNLO}}\) at any scale \(\mu\) with the number of flavours \(n_f = 4\). More...
 
const double AlsByOrder (const double mu, const int Nf_in, const orders order=FULLNLO) const
 
const double AlsByOrder (const double mu, const orders order=FULLNLO, bool Nf_thr=true) const
 
const double AlsOLD (const double mu, const orders order=FULLNLO) const
 Computes the running strong coupling \(\alpha_s(\mu)\) in the \(\overline{\mathrm{MS}}\) scheme. In the cases of LO, NLO and FULLNNLO, the coupling is computed with AlsWithInit(). On the other hand, in the cases of NNLO and FULLNNLO, the coupling is computed with AlsWithLambda(). More...
 
const double AlsWithInit (const double mu, const double alsi, const double mu_i, const int nf, const orders order) const
 Computes the running strong coupling \(\alpha_s(\mu)\) from \(\alpha_s(\mu_i)\) in the \(\overline{\mathrm{MS}}\) scheme, where it is forbidden to across a flavour threshold in the RG running from \(\mu_i\) to \(\mu\). More...
 
const double AlsWithLambda (const double mu, const orders order) const
 Computes the running strong coupling \(\alpha_s(\mu)\) in the \(\overline{\mathrm{MS}}\) scheme with the use of \(\Lambda_{\rm QCD}\). More...
 
const double BelowTh (const double mu) const
 The active flavour threshold below the scale \(\mu\) as defined in QCD::Thresholds(). More...
 
const double Beta0 (const double nf) const
 The \(\beta_0(n_f)\) coefficient for a certain number of flavours \(n_f\). More...
 
const double Beta1 (const double nf) const
 The \(\beta_1(n_f)\) coefficient for a certain number of flavours \(n_f\). More...
 
const double Beta2 (const double nf) const
 The \(\beta_2(n_f)\) coefficient for a certain number of flavours \(n_f\). More...
 
const double Beta3 (const double nf) const
 The \(\beta_3(n_f)\) coefficient for a certain number of flavours \(n_f\). More...
 
void CacheShift (double cache[][5], int n) const
 A member used to manage the caching for this class. More...
 
void CacheShift (int cache[][5], int n) const
 
const orders FullOrder (orders order) const
 Return the FULLORDER enum corresponding to order. More...
 
const double Gamma0 (const double nf) const
 The \(\gamma_0\) coefficient used to compute the running of a mass. More...
 
const double Gamma1 (const double nf) const
 The \(\gamma_1\) coefficient used to compute the running of a mass. More...
 
const double Gamma2 (const double nf) const
 The \(\gamma_2\) coefficient used to compute the running of a mass. More...
 
const double getAlsM () const
 A get method to access the value of \(\alpha_s(M_{\alpha_s})\). More...
 
const BParametergetBBd () const
 For getting the bag parameters corresponding to the operator basis \(O_1 -O_5\) in \(\Delta b = 2\) process in the \(B_d\) meson system. More...
 
const BParametergetBBd_subleading () const
 For getting the subleading bag parameters \(R_2 - R_3\) in \(\Delta b = 2\) process in the \(B_d\) meson system. More...
 
const BParametergetBBs () const
 For getting the bag parameters corresponding to the operator basis \(O_1 -O_5\) in \(\Delta b = 2\) process in the \(B_s\) meson system. More...
 
const BParametergetBBs_subleading () const
 For getting the subleading bag parameters \(R_2 - R_3\) in \(\Delta b = 2\) process in the \(B_s\) meson system. More...
 
const BParametergetBD () const
 For getting the bag parameters corresponding to the operator basis \(O_1 -O_5\) in \(\Delta c = 2\) process in the \(D^0\) meson system. More...
 
const BParametergetBK () const
 For getting the bag parameters corresponding to the operator basis \(O_1 -O_5\) in \(\Delta s = 2\) process in the \(K^0\) meson system. More...
 
const BParametergetBKd1 () const
 
const BParametergetBKd3 () const
 
const double getCF () const
 A get method to access the Casimir factor of QCD. More...
 
const double getMAls () const
 A get method to access the mass scale \(M_{\alpha_s}\) at which the strong coupling constant measurement is provided. More...
 
const MesongetMesons (const QCD::meson m) const
 A get method to access a meson as an object of the type Meson. More...
 
const double getMtpole () const
 A get method to access the pole mass of the top quark. More...
 
const double getMub () const
 A get method to access the threshold between five- and four-flavour theory in GeV. More...
 
const double getMuc () const
 A get method to access the threshold between four- and three-flavour theory in GeV. More...
 
const double getMut () const
 A get method to access the threshold between six- and five-flavour theory in GeV. More...
 
const double getNc () const
 A get method to access the number of colours \(N_c\). More...
 
const double getOptionalParameter (std::string name) const
 A method to get parameters that are specific to only one set of observables. More...
 
const ParticlegetQuarks (const QCD::quark q) const
 A get method to access a quark as an object of the type Particle. More...
 
std::vector< std::string > getUnknownParameters ()
 A method to get the vector of the parameters that have been specified in the configuration file but not being used. More...
 
void initializeBParameter (std::string name_i) const
 A method to initialize B Parameter and the corresponding meson. More...
 
void initializeMeson (QCD::meson meson_i) const
 A method to initialize a meson. More...
 
bool isQCDsuccess () const
 A getter for the QCDsuccess flag. More...
 
const double logLambda (const double nf, orders order) const
 Computes \(\ln\Lambda_\mathrm{QCD}\) with nf flavours in GeV. More...
 
const double Mbar2Mp (const double mbar, const quark q, const orders order=FULLNNLO) const
 Converts the \(\overline{\mathrm{MS}}\) mass \(m(m)\) to the pole mass. More...
 
const double Mofmu2Mbar (const double m, const double mu, const quark q) const
 Converts a quark running mass at an arbitrary scale to the corresponding \(\overline{\mathrm{MS}}\) mass \(m(m)\). More...
 
const double Mp2Mbar (const double mp, const quark q, orders order=FULLNNLO) const
 Converts a quark pole mass to the corresponding \(\overline{\mathrm{MS}}\) mass \(m(m)\). More...
 
const double Mrun (const double mu, const double m, const quark q, const orders order=FULLNNLO) const
 Computes a running quark mass \(m(\mu)\) from \(m(m)\). More...
 
const double Mrun (const double mu_f, const double mu_i, const double m, const quark q, const orders order=FULLNNLO) const
 Runs a quark mass from \(\mu_i\) to \(\mu_f\). More...
 
const double Mrun4 (const double mu_f, const double mu_i, const double m) const
 The running of a mass with the number of flavours \(n_f = 4\). More...
 
const double MS2DRqmass (const double MSbar) const
 Converts a quark mass from the \(\overline{\mathrm{MS}}\) scheme to the \(\overline{\mathrm{DR}}\) scheme. More...
 
const double MS2DRqmass (const double MSscale, const double MSbar) const
 Converts a quark mass from the \(\overline{\mathrm{MS}}\) scheme to the \(\overline{\mathrm{DR}}\) scheme. More...
 
const double Nf (const double mu) const
 The number of active flavour at scale \(\mu\). More...
 
const double NfThresholdCorrections (double mu, double M, double als, int nf, orders order) const
 Threshold corrections in matching \(\alpha_s(n_f+1)\) with \(\alpha_s(n_f)\) from eq. (34) of hep-ph/0512060. More...
 
const std::string orderToString (const orders order) const
 Converts an object of the enum type "orders" to the corresponding string. More...
 
 QCD ()
 Constructor. More...
 
void setComputemt (bool computemt)
 A set method to change the value of computemt. More...
 
void setMtpole (double mtpole_in)
 A method to set the pole mass of the top quark. More...
 
void setNc (double Nc)
 A set method to change the number of colours \(N_c\). More...
 
void setOptionalParameter (std::string name, double value)
 A method to set the parameter value for the parameters that are specific to only one set of observables. More...
 
void setQuarkMass (const quark q, const double mass)
 A set method to change the mass of a quark. More...
 
const double Thresholds (const int i) const
 For accessing the active flavour threshold scales. More...
 
- Public Member Functions inherited from Model
void addMissingModelParameter (const std::string &missingParameterName)
 
std::vector< std::string > getmissingModelParameters ()
 
unsigned int getMissingModelParametersCount ()
 
std::string getModelName () const
 A method to fetch the name of the model. More...
 
const double & getModelParam (std::string name) const
 
bool isModelFWC_DF2 () const
 
bool isModelGeneralTHDM () const
 
bool isModelGeorgiMachacek () const
 
bool IsModelInitialized () const
 A method to check if the model is initialized. More...
 
bool isModelLinearized () const
 
bool isModelNPquadratic () const
 
bool isModelParam (std::string name) const
 
bool isModelSUSY () const
 
bool isModelTHDM () const
 
bool isModelTHDMW () const
 
bool IsUpdateError () const
 A method to check if there was any error in the model update process. More...
 
 Model ()
 The default constructor. More...
 
void raiseMissingModelParameterCount ()
 
void setModelFWC_DF2 ()
 
void setModelGeneralTHDM ()
 
void setModelGeorgiMachacek ()
 
void setModelInitialized (bool ModelInitialized)
 A set method to fix the failure or success of the initialization of the model. More...
 
void setModelLinearized (bool linearized=true)
 
void setModelName (const std::string name)
 A method to set the name of the model. More...
 
void setModelNPquadratic (bool NPquadratic=true)
 
void setModelSUSY ()
 
void setModelTHDM ()
 
void setModelTHDMW ()
 
void setSliced (bool Sliced)
 
void setUpdateError (bool UpdateError)
 A set method to fix the update status as success or failure. More...
 
virtual ~Model ()
 The default destructor. More...
 

Static Public Attributes

static const std::string HChiralvars [NHChiralvars]
 A string array containing the labels of the model parameters in HiggsKvKf. More...
 
static const int NHChiralvars = 18
 The number of the model parameters. More...
 
- Static Public Attributes inherited from StandardModel
static const double GeVminus2_to_nb = 389379.338
 
static const double Mw_error = 0.00001
 The target accuracy of the iterative calculation of the \(W\)-boson mass in units of GeV. More...
 
static const int NSMvars = 26
 The number of the model parameters in StandardModel. More...
 
static const int NumSMParamsForEWPO = 33
 The number of the SM parameters that are relevant to the EW precision observables. More...
 
static std::string SMvars [NSMvars]
 A string array containing the labels of the model parameters in StandardModel. More...
 
- Static Public Attributes inherited from QCD
static const int NQCDvars = 11
 The number of model parameters in QCD. More...
 
static std::string QCDvars [NQCDvars]
 An array containing the labels under which all QCD parameters are stored in a vector of ModelParameter via InputParser::ReadParameters(). More...
 

Protected Member Functions

virtual const double computecb () const
 A method to compute the ratio of the \(Hbb\) coupling in the current model and in the SM. More...
 
virtual const double computecc () const
 A method to compute the ratio of the \(Hcc\) coupling in the current model and in the SM. More...
 
virtual const double computecg () const
 A method to compute the ratio of the \(Hgg\) coupling in the current model and in the SM. More...
 
virtual const double computecgaga () const
 A method to compute the ratio of the \(H\gamma\gamma\) coupling in the current model and in the SM. More...
 
virtual const double computecmu () const
 A method to compute the ratio of the \(H\mu\mu\) coupling in the current model and in the SM. More...
 
virtual const double computecs () const
 A method to compute the ratio of the \(Hss\) coupling in the current model and in the SM. More...
 
virtual const double computect () const
 A method to compute the ratio of the \(Htt\) coupling in the current model and in the SM. More...
 
virtual const double computectau () const
 A method to compute the ratio of the \(H\tau\tau\) coupling in the current model and in the SM. More...
 
virtual const double computecV () const
 A method to compute the ratio of the \(HVV\) coupling in the current model and in the SM. More...
 
virtual const double computecZga () const
 A method to compute the ratio of the \(HZ\gamma\) coupling in the current model and in the SM. More...
 
virtual void setParameter (const std::string name, const double &value)
 A method to set the value of a parameter of HiggsChiral. More...
 
- Protected Member Functions inherited from StandardModel
const double AFB_NoISR_l (const QCD::lepton l_flavor, const double s) const
 
const double AFB_NoISR_q (const QCD::quark q_flavor, const double s) const
 
bool checkEWPOscheme (const std::string scheme) const
 A method to check if a given scheme name in string form is valid. More...
 
virtual void computeCKM ()
 The method to compute the CKM matrix. More...
 
virtual void computeYukawas ()
 The method to compute the Yukawas matrix. More...
 
double Delta_EWQCD (const QCD::quark q) const
 The non-factorizable EW-QCD corrections to the partial widths for \(Z\to q\bar{q}\), denoted as \(\Delta_{\mathrm{EW/QCD}}\). More...
 
const double getIntegrand_AFBnumeratorWithISR_bottom133 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_bottom167 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_bottom172 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_bottom183 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_bottom189 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_bottom192 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_bottom196 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_bottom200 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_bottom202 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_bottom205 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_bottom207 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_charm133 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_charm167 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_charm172 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_charm183 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_charm189 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_charm192 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_charm196 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_charm200 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_charm202 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_charm205 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_charm207 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu130 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu136 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu161 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu172 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu183 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu189 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu192 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu196 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu200 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu202 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu205 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_mu207 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau130 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau136 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau161 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau172 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau183 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau189 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau192 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau196 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau200 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau202 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau205 (double x) const
 
const double getIntegrand_AFBnumeratorWithISR_tau207 (double x) const
 
const double getIntegrand_dsigmaBox_bottom130 (double x) const
 
const double getIntegrand_dsigmaBox_bottom133 (double x) const
 
const double getIntegrand_dsigmaBox_bottom136 (double x) const
 
const double getIntegrand_dsigmaBox_bottom161 (double x) const
 
const double getIntegrand_dsigmaBox_bottom167 (double x) const
 
const double getIntegrand_dsigmaBox_bottom172 (double x) const
 
const double getIntegrand_dsigmaBox_bottom183 (double x) const
 
const double getIntegrand_dsigmaBox_bottom189 (double x) const
 
const double getIntegrand_dsigmaBox_bottom192 (double x) const
 
const double getIntegrand_dsigmaBox_bottom196 (double x) const
 
const double getIntegrand_dsigmaBox_bottom200 (double x) const
 
const double getIntegrand_dsigmaBox_bottom202 (double x) const
 
const double getIntegrand_dsigmaBox_bottom205 (double x) const
 
const double getIntegrand_dsigmaBox_bottom207 (double x) const
 
const double getIntegrand_dsigmaBox_charm130 (double x) const
 
const double getIntegrand_dsigmaBox_charm133 (double x) const
 
const double getIntegrand_dsigmaBox_charm136 (double x) const
 
const double getIntegrand_dsigmaBox_charm161 (double x) const
 
const double getIntegrand_dsigmaBox_charm167 (double x) const
 
const double getIntegrand_dsigmaBox_charm172 (double x) const
 
const double getIntegrand_dsigmaBox_charm183 (double x) const
 
const double getIntegrand_dsigmaBox_charm189 (double x) const
 
const double getIntegrand_dsigmaBox_charm192 (double x) const
 
const double getIntegrand_dsigmaBox_charm196 (double x) const
 
const double getIntegrand_dsigmaBox_charm200 (double x) const
 
const double getIntegrand_dsigmaBox_charm202 (double x) const
 
const double getIntegrand_dsigmaBox_charm205 (double x) const
 
const double getIntegrand_dsigmaBox_charm207 (double x) const
 
const double getIntegrand_dsigmaBox_down130 (double x) const
 
const double getIntegrand_dsigmaBox_down133 (double x) const
 
const double getIntegrand_dsigmaBox_down136 (double x) const
 
const double getIntegrand_dsigmaBox_down161 (double x) const
 
const double getIntegrand_dsigmaBox_down167 (double x) const
 
const double getIntegrand_dsigmaBox_down172 (double x) const
 
const double getIntegrand_dsigmaBox_down183 (double x) const
 
const double getIntegrand_dsigmaBox_down189 (double x) const
 
const double getIntegrand_dsigmaBox_down192 (double x) const
 
const double getIntegrand_dsigmaBox_down196 (double x) const
 
const double getIntegrand_dsigmaBox_down200 (double x) const
 
const double getIntegrand_dsigmaBox_down202 (double x) const
 
const double getIntegrand_dsigmaBox_down205 (double x) const
 
const double getIntegrand_dsigmaBox_down207 (double x) const
 
const double getIntegrand_dsigmaBox_mu130 (double x) const
 
const double getIntegrand_dsigmaBox_mu133 (double x) const
 
const double getIntegrand_dsigmaBox_mu136 (double x) const
 
const double getIntegrand_dsigmaBox_mu161 (double x) const
 
const double getIntegrand_dsigmaBox_mu167 (double x) const
 
const double getIntegrand_dsigmaBox_mu172 (double x) const
 
const double getIntegrand_dsigmaBox_mu183 (double x) const
 
const double getIntegrand_dsigmaBox_mu189 (double x) const
 
const double getIntegrand_dsigmaBox_mu192 (double x) const
 
const double getIntegrand_dsigmaBox_mu196 (double x) const
 
const double getIntegrand_dsigmaBox_mu200 (double x) const
 
const double getIntegrand_dsigmaBox_mu202 (double x) const
 
const double getIntegrand_dsigmaBox_mu205 (double x) const
 
const double getIntegrand_dsigmaBox_mu207 (double x) const
 
const double getIntegrand_dsigmaBox_strange130 (double x) const
 
const double getIntegrand_dsigmaBox_strange133 (double x) const
 
const double getIntegrand_dsigmaBox_strange136 (double x) const
 
const double getIntegrand_dsigmaBox_strange161 (double x) const
 
const double getIntegrand_dsigmaBox_strange167 (double x) const
 
const double getIntegrand_dsigmaBox_strange172 (double x) const
 
const double getIntegrand_dsigmaBox_strange183 (double x) const
 
const double getIntegrand_dsigmaBox_strange189 (double x) const
 
const double getIntegrand_dsigmaBox_strange192 (double x) const
 
const double getIntegrand_dsigmaBox_strange196 (double x) const
 
const double getIntegrand_dsigmaBox_strange200 (double x) const
 
const double getIntegrand_dsigmaBox_strange202 (double x) const
 
const double getIntegrand_dsigmaBox_strange205 (double x) const
 
const double getIntegrand_dsigmaBox_strange207 (double x) const
 
const double getIntegrand_dsigmaBox_tau130 (double x) const
 
const double getIntegrand_dsigmaBox_tau133 (double x) const
 
const double getIntegrand_dsigmaBox_tau136 (double x) const
 
const double getIntegrand_dsigmaBox_tau161 (double x) const
 
const double getIntegrand_dsigmaBox_tau167 (double x) const
 
const double getIntegrand_dsigmaBox_tau172 (double x) const
 
const double getIntegrand_dsigmaBox_tau183 (double x) const
 
const double getIntegrand_dsigmaBox_tau189 (double x) const
 
const double getIntegrand_dsigmaBox_tau192 (double x) const
 
const double getIntegrand_dsigmaBox_tau196 (double x) const
 
const double getIntegrand_dsigmaBox_tau200 (double x) const
 
const double getIntegrand_dsigmaBox_tau202 (double x) const
 
const double getIntegrand_dsigmaBox_tau205 (double x) const
 
const double getIntegrand_dsigmaBox_tau207 (double x) const
 
const double getIntegrand_dsigmaBox_up130 (double x) const
 
const double getIntegrand_dsigmaBox_up133 (double x) const
 
const double getIntegrand_dsigmaBox_up136 (double x) const
 
const double getIntegrand_dsigmaBox_up161 (double x) const
 
const double getIntegrand_dsigmaBox_up167 (double x) const
 
const double getIntegrand_dsigmaBox_up172 (double x) const
 
const double getIntegrand_dsigmaBox_up183 (double x) const
 
const double getIntegrand_dsigmaBox_up189 (double x) const
 
const double getIntegrand_dsigmaBox_up192 (double x) const
 
const double getIntegrand_dsigmaBox_up196 (double x) const
 
const double getIntegrand_dsigmaBox_up200 (double x) const
 
const double getIntegrand_dsigmaBox_up202 (double x) const
 
const double getIntegrand_dsigmaBox_up205 (double x) const
 
const double getIntegrand_dsigmaBox_up207 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom130 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom133 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom136 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom161 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom167 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom172 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom183 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom189 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom192 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom196 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom200 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom202 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom205 (double x) const
 
const double getIntegrand_sigmaWithISR_bottom207 (double x) const
 
const double getIntegrand_sigmaWithISR_charm130 (double x) const
 
const double getIntegrand_sigmaWithISR_charm133 (double x) const
 
const double getIntegrand_sigmaWithISR_charm136 (double x) const
 
const double getIntegrand_sigmaWithISR_charm161 (double x) const
 
const double getIntegrand_sigmaWithISR_charm167 (double x) const
 
const double getIntegrand_sigmaWithISR_charm172 (double x) const
 
const double getIntegrand_sigmaWithISR_charm183 (double x) const
 
const double getIntegrand_sigmaWithISR_charm189 (double x) const
 
const double getIntegrand_sigmaWithISR_charm192 (double x) const
 
const double getIntegrand_sigmaWithISR_charm196 (double x) const
 
const double getIntegrand_sigmaWithISR_charm200 (double x) const
 
const double getIntegrand_sigmaWithISR_charm202 (double x) const
 
const double getIntegrand_sigmaWithISR_charm205 (double x) const
 
const double getIntegrand_sigmaWithISR_charm207 (double x) const
 
const double getIntegrand_sigmaWithISR_down130 (double x) const
 
const double getIntegrand_sigmaWithISR_down133 (double x) const
 
const double getIntegrand_sigmaWithISR_down136 (double x) const
 
const double getIntegrand_sigmaWithISR_down161 (double x) const
 
const double getIntegrand_sigmaWithISR_down167 (double x) const
 
const double getIntegrand_sigmaWithISR_down172 (double x) const
 
const double getIntegrand_sigmaWithISR_down183 (double x) const
 
const double getIntegrand_sigmaWithISR_down189 (double x) const
 
const double getIntegrand_sigmaWithISR_down192 (double x) const
 
const double getIntegrand_sigmaWithISR_down196 (double x) const
 
const double getIntegrand_sigmaWithISR_down200 (double x) const
 
const double getIntegrand_sigmaWithISR_down202 (double x) const
 
const double getIntegrand_sigmaWithISR_down205 (double x) const
 
const double getIntegrand_sigmaWithISR_down207 (double x) const
 
const double getIntegrand_sigmaWithISR_mu130 (double x) const
 
const double getIntegrand_sigmaWithISR_mu136 (double x) const
 
const double getIntegrand_sigmaWithISR_mu161 (double x) const
 
const double getIntegrand_sigmaWithISR_mu172 (double x) const
 
const double getIntegrand_sigmaWithISR_mu183 (double x) const
 
const double getIntegrand_sigmaWithISR_mu189 (double x) const
 
const double getIntegrand_sigmaWithISR_mu192 (double x) const
 
const double getIntegrand_sigmaWithISR_mu196 (double x) const
 
const double getIntegrand_sigmaWithISR_mu200 (double x) const
 
const double getIntegrand_sigmaWithISR_mu202 (double x) const
 
const double getIntegrand_sigmaWithISR_mu205 (double x) const
 
const double getIntegrand_sigmaWithISR_mu207 (double x) const
 
const double getIntegrand_sigmaWithISR_strange130 (double x) const
 
const double getIntegrand_sigmaWithISR_strange133 (double x) const
 
const double getIntegrand_sigmaWithISR_strange136 (double x) const
 
const double getIntegrand_sigmaWithISR_strange161 (double x) const
 
const double getIntegrand_sigmaWithISR_strange167 (double x) const
 
const double getIntegrand_sigmaWithISR_strange172 (double x) const
 
const double getIntegrand_sigmaWithISR_strange183 (double x) const
 
const double getIntegrand_sigmaWithISR_strange189 (double x) const
 
const double getIntegrand_sigmaWithISR_strange192 (double x) const
 
const double getIntegrand_sigmaWithISR_strange196 (double x) const
 
const double getIntegrand_sigmaWithISR_strange200 (double x) const
 
const double getIntegrand_sigmaWithISR_strange202 (double x) const
 
const double getIntegrand_sigmaWithISR_strange205 (double x) const
 
const double getIntegrand_sigmaWithISR_strange207 (double x) const
 
const double getIntegrand_sigmaWithISR_tau130 (double x) const
 
const double getIntegrand_sigmaWithISR_tau136 (double x) const
 
const double getIntegrand_sigmaWithISR_tau161 (double x) const
 
const double getIntegrand_sigmaWithISR_tau172 (double x) const
 
const double getIntegrand_sigmaWithISR_tau183 (double x) const
 
const double getIntegrand_sigmaWithISR_tau189 (double x) const
 
const double getIntegrand_sigmaWithISR_tau192 (double x) const
 
const double getIntegrand_sigmaWithISR_tau196 (double x) const
 
const double getIntegrand_sigmaWithISR_tau200 (double x) const
 
const double getIntegrand_sigmaWithISR_tau202 (double x) const
 
const double getIntegrand_sigmaWithISR_tau205 (double x) const
 
const double getIntegrand_sigmaWithISR_tau207 (double x) const
 
const double getIntegrand_sigmaWithISR_up130 (double x) const
 
const double getIntegrand_sigmaWithISR_up133 (double x) const
 
const double getIntegrand_sigmaWithISR_up136 (double x) const
 
const double getIntegrand_sigmaWithISR_up161 (double x) const
 
const double getIntegrand_sigmaWithISR_up167 (double x) const
 
const double getIntegrand_sigmaWithISR_up172 (double x) const
 
const double getIntegrand_sigmaWithISR_up183 (double x) const
 
const double getIntegrand_sigmaWithISR_up189 (double x) const
 
const double getIntegrand_sigmaWithISR_up192 (double x) const
 
const double getIntegrand_sigmaWithISR_up196 (double x) const
 
const double getIntegrand_sigmaWithISR_up200 (double x) const
 
const double getIntegrand_sigmaWithISR_up202 (double x) const
 
const double getIntegrand_sigmaWithISR_up205 (double x) const
 
const double getIntegrand_sigmaWithISR_up207 (double x) const
 
const double Integrand_AFBnumeratorWithISR_l (double x, const QCD::lepton l_flavor, const double s) const
 
const double Integrand_AFBnumeratorWithISR_q (double x, const QCD::quark q_flavor, const double s) const
 
const double Integrand_dsigmaBox_l (double cosTheta, const QCD::lepton l_flavor, const double s) const
 
const double Integrand_dsigmaBox_q (double cosTheta, const QCD::quark q_flavor, const double s) const
 
const double Integrand_sigmaWithISR_l (double x, const QCD::lepton l_flavor, const double s) const
 
const double Integrand_sigmaWithISR_q (double x, const QCD::quark q_flavor, const double s) const
 
double m_q (const QCD::quark q, const double mu, const orders order=FULLNLO) const
 
double RAq (const QCD::quark q) const
 The radiator factor associated with the final-state QED and QCD corrections to the the axial-vector-current interactions, \(R_A^q(M_Z^2)\). More...
 
double resumKappaZ (const double DeltaRho[orders_EW_size], const double deltaKappa_rem[orders_EW_size], const double DeltaRbar_rem, const bool bool_Zbb) const
 A method to compute the real part of the effetvive coupling \(\kappa_Z^f\) from \(\Delta\rho\), \(\delta\rho_{\rm rem}^{f}\) and \(\Delta r_{\mathrm{rem}}\). More...
 
double resumMw (const double Mw_i, const double DeltaRho[orders_EW_size], const double DeltaR_rem[orders_EW_size]) const
 A method to compute the \(W\)-boson mass from \(\Delta\rho\) and \(\Delta r_{\mathrm{rem}}\). More...
 
double resumRhoZ (const double DeltaRho[orders_EW_size], const double deltaRho_rem[orders_EW_size], const double DeltaRbar_rem, const bool bool_Zbb) const
 A method to compute the real part of the effective coupling \(\rho_Z^f\) from \(\Delta\rho\), \(\delta\rho_{\rm rem}^{f}\) and \(\Delta r_{\mathrm{rem}}\). More...
 
double RVh () const
 The singlet vector corrections to the hadronic \(Z\)-boson width, denoted as \(R_V^h\). More...
 
double RVq (const QCD::quark q) const
 The radiator factor associated with the final-state QED and QCD corrections to the the vector-current interactions, \(R_V^q(M_Z^2)\). More...
 
double SchemeToDouble (const std::string scheme) const
 A method to convert a given scheme name in string form into a floating-point number with double precision. More...
 
const double sigma_NoISR_l (const QCD::lepton l_flavor, const double s) const
 
const double sigma_NoISR_q (const QCD::quark q_flavor, const double s) const
 
double taub () const
 Top-mass corrections to the \(Zb\bar{b}\) vertex, denoted by \(\tau_b\). More...
 
- Protected Member Functions inherited from QCD
const double MassOfNf (int nf) const
 The Mbar mass of the heaviest quark in the theory with Nf active flavour. More...
 

Private Member Functions

gslpp::complex f_func (const double x) const
 
gslpp::complex g_func (const double x) const
 
gslpp::complex Int1 (const double tau, const double lambda) const
 
gslpp::complex Int2 (const double tau, const double lambda) const
 

Private Attributes

double cb
 
double cc
 
double cg
 
double cg_loop
 
double cga
 
double cga_loop
 
double cmu
 
double cs
 
double ct
 
double ctau
 
double cv
 
double cZga
 
double cZga_loop
 
double expZgaLimitATLAS
 
double expZgaLimitATLAS13
 
double expZgaLimitCMS
 
double expZgaLimitCMS13
 
bool FlagUniversalcf
 A boolean flag that is true if all cf take the same universal value. More...
 
bool FlagUniversalcvcf
 A boolean flag that is true if all cv and cf take the same universal value. More...
 
bool loopComputed
 
double obsZgaLimitATLAS
 
double obsZgaLimitATLAS13
 
double obsZgaLimitCMS
 
double obsZgaLimitCMS13
 

Additional Inherited Members

- Public Types inherited from StandardModel
enum  LEP2RCs { Weak = 0 , WeakBox , ISR , QEDFSR , QCDFSR , NUMofLEP2RCs }
 
enum  orders_EW { EW1 = 0 , EW1QCD1 , EW1QCD2 , EW2 , EW2QCD1 , EW3 , orders_EW_size }
 An enumerated type representing perturbative orders of radiative corrections to EW precision observables. More...
 
- Public Types inherited from QCD
enum  lepton { NEUTRINO_1 , ELECTRON , NEUTRINO_2 , MU , NEUTRINO_3 , TAU , NOLEPTON }
 An enum type for leptons. More...
 
enum  meson { P_0 , P_P , K_0 , K_P , D_0 , D_P , D_S , B_D , B_P , B_S , B_C , PHI , K_star , K_star_P , K_S , D_star_P , RHO , RHO_P , OMEGA , MESON_END }
 An enum type for mesons. More...
 
enum  quark { UP , DOWN , CHARM , STRANGE , TOP , BOTTOM }
 An enum type for quarks. More...
 
- Public Attributes inherited from NPbase
double C1Hbb = 0.0
 
double C1Hcc = 0.0
 
double C1Hgaga = 0.0049
 
double C1Hgg = 0.0066
 
double C1Hmumu = 0.0
 The C1 coefficient controlling the H^3 corrections to the Higgs partial width from the Higgs trilinear coupling. More...
 
double C1Hss = 0.0
 
double C1Htautau = 0.0
 
double C1HWW = 0.0073
 
double C1HZga = 0.0
 The C1 coefficient controlling the H^3 corrections to the Higgs partial width from the Higgs trilinear coupling.
More...
 
double C1HZZ = 0.0083
 
- Protected Attributes inherited from NPbase
StandardModel trueSM
 
- Protected Attributes inherited from StandardModel
double A
 The CKM parameter \(A\) in the Wolfenstein parameterization. More...
 
double ale
 The fine-structure constant \(\alpha\). More...
 
double alpha21
 
double alpha31
 
double AlsMz
 The strong coupling constant at the Z-boson mass, \(\alpha_s(M_Z)\). More...
 
bool bSigmaForAFB
 
bool bSigmaForR
 
double dAl5hMz
 The five-flavour hadronic contribution to the electromagnetic coupling, \(\Delta\alpha_{\mathrm{had}}^{(5)}(M_Z^2)\). (Non-input parameter) More...
 
double dAle5Mz
 The five-flavour hadronic contribution to the electromagnetic coupling, \(\Delta\alpha_{\mathrm{had}}^{(5)}(M_Z^2)\), used as input for FlagMWinput = FALSE. More...
 
double delGammaZ
 The theoretical uncertainty in \(\Gamma_Z\), denoted as \(\delta\,\Gamma_Z\), in GeV. More...
 
double delMw
 The theoretical uncertainty in \(M_W\), denoted as \(\delta\,M_W\), in GeV. More...
 
double delR0b
 The theoretical uncertainty in \(R_b^0\), denoted as \(\delta\,R_b^0\). More...
 
double delR0c
 The theoretical uncertainty in \(R_c^0\), denoted as \(\delta\,R_c^0\). More...
 
double delR0l
 The theoretical uncertainty in \(R_l^0\), denoted as \(\delta\,R_l^0\). More...
 
double delsigma0H
 The theoretical uncertainty in \(\sigma_{Hadron}^0\), denoted as \(\delta\,\sigma_{Hadron}^0\) in nb. More...
 
double delSin2th_b
 The theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{b}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{b}\). More...
 
double delSin2th_l
 The theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{\rm lept}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{\rm lept}\). More...
 
double delSin2th_q
 The theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{q\not = b,t}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{q\not = b,t}\). More...
 
double delta
 
double etab
 The CKM parameter \(\bar{\eta}\) in the Wolfenstein parameterization. More...
 
bool flag_order [orders_EW_size]
 An array of internal flags controlling the inclusions of higher-order corrections. More...
 
bool FlagFixMuwMut
 A boolean for the model flag FixMuwMut. More...
 
bool flagLEP2 [NUMofLEP2RCs]
 
double gamma
 \(\gamma \) used as an input for FlagWolfenstein = FALSE More...
 
double GF
 The Fermi constant \(G_\mu\) in \({\rm GeV}^{-2}\). More...
 
double lambda
 The CKM parameter \(\lambda\) in the Wolfenstein parameterization. More...
 
Particle leptons [6]
 An array of Particle objects for the leptons. More...
 
double mHl
 The Higgs mass \(m_h\) in GeV. More...
 
double muw
 A matching scale \(\mu_W\) around the weak scale in GeV. More...
 
double Mw_inp
 The mass of the \(W\) boson in GeV used as input for FlagMWinput = TRUE. More...
 
CKM myCKM
 An object of type CKM. More...
 
PMNS myPMNS
 
double Mz
 The mass of the \(Z\) boson in GeV. More...
 
bool requireCKM
 An internal flag to control whether the CKM matrix has to be recomputed. More...
 
bool requireYe
 An internal flag to control whether the charged-lepton Yukawa matrix has to be recomputed. More...
 
bool requireYn
 An internal flag to control whether the neutrino Yukawa matrix has to be recomputed. More...
 
double rhob
 The CKM parameter \(\bar{\rho}\) in the Wolfenstein parameterization. More...
 
double s12
 
double s13
 
double s23
 
Flavour SMFlavour
 An object of type Flavour. More...
 
Matching< StandardModelMatching, StandardModelSMM
 An object of type Matching. More...
 
double Vcb
 \(\vert V_{cb} \vert \) used as an input for FlagWolfenstein = FALSE More...
 
double Vub
 \(\vert V_{ub} \vert \) used as an input for FlagWolfenstein = FALSE More...
 
double Vud
 \(\vert V_{ud} \vert \) used as an input for FlagWolfenstein = FALSE and FlagUseVud = TRUE More...
 
double Vus
 \(\vert V_{us} \vert \) used as an input for FlagWolfenstein = FALSE More...
 
gslpp::matrix< gslpp::complex > Yd
 The Yukawa matrix of the down-type quarks. More...
 
gslpp::matrix< gslpp::complex > Ye
 The Yukawa matrix of the charged leptons. More...
 
gslpp::matrix< gslpp::complex > Yn
 The Yukawa matrix of the neutrinos. More...
 
gslpp::matrix< gslpp::complex > Yu
 The Yukawa matrix of the up-type quarks. More...
 
- Protected Attributes inherited from QCD
double AlsM
 The strong coupling constant at the mass scale MAls, \(\alpha_s(M_{\alpha_s})\). More...
 
double CA
 
double CF
 
bool computemt
 Switch for computing the \(\overline{\mathrm{MS}}\) mass of the top quark. More...
 
double dAdA_NA
 
double dFdA_NA
 
double dFdF_NA
 
bool FlagMpole2MbarNumeric
 A flag to determine whether the pole mass to \(\over \mathrm{MS}\) mass conversion is done numerically. More...
 
bool FlagMtPole
 A flag to determine whether the pole mass of the top quark is used as input. More...
 
double MAls
 The mass scale in GeV at which the strong coupling measurement is provided. More...
 
double mtpole
 The pole mass of the top quark. More...
 
double mub
 The threshold between five- and four-flavour theory in GeV. More...
 
double muc
 The threshold between four- and three-flavour theory in GeV. More...
 
double mut
 The threshold between six- and five-flavour theory in GeV. More...
 
double NA
 
double Nc
 The number of colours. More...
 
bool QCDsuccess =true
 
Particle quarks [6]
 The vector of all SM quarks. More...
 
bool requireYd
 Switch for generating the Yukawa couplings to the down-type quarks. More...
 
bool requireYu
 Switch for generating the Yukawa couplings to the up-type quarks. More...
 
double TF
 
- Protected Attributes inherited from Model
bool isSliced = false
 A boolean set to true if the current istance is a slice of an extended object. More...
 
std::map< std::string, std::reference_wrapper< const double > > ModelParamMap
 
bool UpdateError = false
 A boolean set to false if update is successful. More...
 

Constructor & Destructor Documentation

◆ HiggsChiral()

HiggsChiral::HiggsChiral ( )

The default constructor.

Definition at line 14 of file HiggsChiral.cpp.

15: NPbase()
16{
17 FlagUniversalcf = false;
18 FlagUniversalcvcf = false;
19
20 ModelParamMap.insert(std::make_pair("cv", std::cref(cv)));
21 ModelParamMap.insert(std::make_pair("ct", std::cref(ct)));
22 ModelParamMap.insert(std::make_pair("cb", std::cref(cb)));
23 ModelParamMap.insert(std::make_pair("cc", std::cref(cc)));
24 ModelParamMap.insert(std::make_pair("cs", std::cref(cs)));
25 ModelParamMap.insert(std::make_pair("ctau", std::cref(ctau)));
26 ModelParamMap.insert(std::make_pair("cmu", std::cref(cmu)));
27 ModelParamMap.insert(std::make_pair("cg", std::cref(cg)));
28 ModelParamMap.insert(std::make_pair("cga", std::cref(cga)));
29 ModelParamMap.insert(std::make_pair("cZga", std::cref(cZga)));
30 ModelParamMap.insert(std::make_pair("obsZgaLimitATLAS13", std::cref(obsZgaLimitATLAS13)));
31 ModelParamMap.insert(std::make_pair("obsZgaLimitCMS13", std::cref(obsZgaLimitCMS13)));
32 ModelParamMap.insert(std::make_pair("obsZgaLimitATLAS", std::cref(obsZgaLimitATLAS)));
33 ModelParamMap.insert(std::make_pair("obsZgaLimitCMS", std::cref(obsZgaLimitCMS)));
34 ModelParamMap.insert(std::make_pair("expZgaLimitATLAS13", std::cref(expZgaLimitATLAS13)));
35 ModelParamMap.insert(std::make_pair("expZgaLimitCMS13", std::cref(expZgaLimitCMS13)));
36 ModelParamMap.insert(std::make_pair("expZgaLimitATLAS", std::cref(expZgaLimitATLAS)));
37 ModelParamMap.insert(std::make_pair("expZgaLimitCMS", std::cref(expZgaLimitCMS)));
38
39 loopComputed = false;
40 cg_loop = 0.;
41 cga_loop = 0.;
42 cZga_loop = 0.;
43}
double expZgaLimitCMS
Definition: HiggsChiral.h:2238
double obsZgaLimitATLAS13
Definition: HiggsChiral.h:2231
double expZgaLimitATLAS13
Definition: HiggsChiral.h:2235
double obsZgaLimitCMS13
Definition: HiggsChiral.h:2232
double expZgaLimitATLAS
Definition: HiggsChiral.h:2237
double cga_loop
Definition: HiggsChiral.h:2241
double cg_loop
Definition: HiggsChiral.h:2240
double expZgaLimitCMS13
Definition: HiggsChiral.h:2236
double obsZgaLimitATLAS
Definition: HiggsChiral.h:2233
double cZga_loop
Definition: HiggsChiral.h:2242
bool loopComputed
Definition: HiggsChiral.h:2243
bool FlagUniversalcf
A boolean flag that is true if all cf take the same universal value.
Definition: HiggsChiral.h:2245
bool FlagUniversalcvcf
A boolean flag that is true if all cv and cf take the same universal value.
Definition: HiggsChiral.h:2246
double obsZgaLimitCMS
Definition: HiggsChiral.h:2234
std::map< std::string, std::reference_wrapper< const double > > ModelParamMap
Definition: Model.h:280
NPbase()
The default constructor.
Definition: NPbase.cpp:29

◆ ~HiggsChiral()

virtual HiggsChiral::~HiggsChiral ( )
inlinevirtual

The default destructor.

Definition at line 127 of file HiggsChiral.h.

128 {};

Member Function Documentation

◆ BrH2d2dRatio()

const double HiggsChiral::BrH2d2dRatio ( ) const
virtual

The ratio of the Br \((H\to 2d2d)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2d2d)\)/Br \((H\to 2d2d)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 745 of file HiggsChiral.cpp.

746{
747 return BrHZZRatio();
748}
virtual const double BrHZZRatio() const
The ratio of the Br in the current model and in the Standard Model.

◆ BrH2e2muRatio()

const double HiggsChiral::BrH2e2muRatio ( ) const
virtual

The ratio of the Br \((H\to 2e 2\mu)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2L2L)\)/Br \((H\to 2e 2\mu)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 710 of file HiggsChiral.cpp.

711{
712 return BrHZZRatio();
713}

◆ BrH2e2vRatio()

const double HiggsChiral::BrH2e2vRatio ( ) const
virtual

The ratio of the Br \((H\to 2e2v)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2e2v)\)/Br \((H\to 2e2v)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 730 of file HiggsChiral.cpp.

731{
732 return BrHZZRatio();
733}

◆ BrH2evRatio()

const double HiggsChiral::BrH2evRatio ( ) const
virtual

The ratio of the Br \((H\to 2ev)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2ev)\)/Br \((H\to 2ev)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 848 of file HiggsChiral.cpp.

849{
850 // Approximate by pure CC
851 return BrHWWRatio();
852}
virtual const double BrHWWRatio() const
The ratio of the Br in the current model and in the Standard Model.

◆ BrH2L2dRatio()

const double HiggsChiral::BrH2L2dRatio ( ) const
virtual

The ratio of the Br \((H\to 2L2d)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model.

Returns
Br \((H\to 2L2d)\)/Br \((H\to 2L2d)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 760 of file HiggsChiral.cpp.

761{
762 return BrHZZRatio();
763}

◆ BrH2L2LRatio()

const double HiggsChiral::BrH2L2LRatio ( ) const
virtual

The ratio of the Br \((H\to 2L2L')\) ( \(L,L'=e,\mu,\tau\)) in the current model and in the Standard Model.

Returns
Br \((H\to 2L2L')\)/Br \((H\to 2L2L')_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 705 of file HiggsChiral.cpp.

706{
707 return BrHZZRatio();
708}

◆ BrH2L2uRatio()

const double HiggsChiral::BrH2L2uRatio ( ) const
virtual

The ratio of the Br \((H\to 2L2u)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model.

Returns
Br \((H\to 2L2u)\)/Br \((H\to 2L2u)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 755 of file HiggsChiral.cpp.

756{
757 return BrHZZRatio();
758}

◆ BrH2L2v2Ratio()

const double HiggsChiral::BrH2L2v2Ratio ( ) const
virtual

The ratio of the Br \((H\to 2L2v)\) ( \(L=e,\mu\)) in the current model and in the Standard Model.

Returns
Br \((H\to 2L2v)\)/Br \((H\to 2L2v)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 725 of file HiggsChiral.cpp.

726{
727 return BrHZZRatio();
728}

◆ BrH2L2vRatio()

const double HiggsChiral::BrH2L2vRatio ( ) const
virtual

The ratio of the Br \((H\to 2L2v)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model.

Returns
Br \((H\to 2L2v)\)/Br \((H\to 2L2v)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 720 of file HiggsChiral.cpp.

721{
722 return BrHZZRatio();
723}

◆ BrH2l2vRatio()

const double HiggsChiral::BrH2l2vRatio ( ) const
virtual

The ratio of the Br \((H\to 2l2v)\) ( \(l=e,\mu\)) in the current model and in the Standard Model.

Returns
Br \((H\to 2l2v)\)/Br \((H\to 2l2v)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 896 of file HiggsChiral.cpp.

897{
898 // Approximate by pure CC
899 return BrHWWRatio();
900}

◆ BrH2Lv2Ratio()

const double HiggsChiral::BrH2Lv2Ratio ( ) const
virtual

The ratio of the Br \((H\to 2Lv)\) ( \(L=e,\mu\)) in the current model and in the Standard Model.

Returns
Br \((H\to 2Lv)\)/Br \((H\to 2Lv)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 842 of file HiggsChiral.cpp.

843{
844 // Approximate by pure CC
845 return BrHWWRatio();
846}

◆ BrH2LvRatio()

const double HiggsChiral::BrH2LvRatio ( ) const
virtual

The ratio of the Br \((H\to 2Lv)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model.

Returns
Br \((H\to 2Lv)\)/Br \((H\to 2Lv)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 836 of file HiggsChiral.cpp.

837{
838 // Approximate by pure CC
839 return BrHWWRatio();
840}

◆ BrH2mu2vRatio()

const double HiggsChiral::BrH2mu2vRatio ( ) const
virtual

The ratio of the Br \((H\to 2\mu 2v)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2\mu 2v)\)/Br \((H\to 2\mu 2v)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 735 of file HiggsChiral.cpp.

736{
737 return BrHZZRatio();
738}

◆ BrH2muvRatio()

const double HiggsChiral::BrH2muvRatio ( ) const
virtual

The ratio of the Br \((H\to 2ev)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2\mu v)\)/Br \((H\to 2\mu v)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 854 of file HiggsChiral.cpp.

855{
856 // Approximate by pure CC
857 return BrHWWRatio();
858}

◆ BrH2u2dRatio()

const double HiggsChiral::BrH2u2dRatio ( ) const
virtual

The ratio of the Br \((H\to 2u2d)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2u2d)\)/Br \((H\to 2u2d)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 750 of file HiggsChiral.cpp.

751{
752 return BrHZZRatio();
753}

◆ BrH2u2uRatio()

const double HiggsChiral::BrH2u2uRatio ( ) const
virtual

The ratio of the Br \((H\to 2u2u)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2u2u)\)/Br \((H\to 2u2u)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 740 of file HiggsChiral.cpp.

741{
742 return BrHZZRatio();
743}

◆ BrH2udRatio()

const double HiggsChiral::BrH2udRatio ( ) const
virtual

The ratio of the Br \((H\to 2ud)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2ud)\)/Br \((H\to 2ud)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 830 of file HiggsChiral.cpp.

831{
832 // Approximate by pure CC
833 return BrHWWRatio();
834}

◆ BrH2v2dRatio()

const double HiggsChiral::BrH2v2dRatio ( ) const
virtual

The ratio of the Br \((H\to 2v2d)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2v2d)\)/Br \((H\to 2v2d)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 770 of file HiggsChiral.cpp.

771{
772 return BrHZZRatio();
773}

◆ BrH2v2uRatio()

const double HiggsChiral::BrH2v2uRatio ( ) const
virtual

The ratio of the Br \((H\to 2v2u)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2v2u)\)/Br \((H\to 2v2u)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 765 of file HiggsChiral.cpp.

766{
767 return BrHZZRatio();
768}

◆ BrH2v2vRatio()

const double HiggsChiral::BrH2v2vRatio ( ) const
virtual

The ratio of the Br \((H\to 2v2v)\) in the current model and in the Standard Model.

Returns
Br \((H\to 2v2v)\)/Br \((H\to 2v2v)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 715 of file HiggsChiral.cpp.

716{
717 return BrHZZRatio();
718}

◆ BrH4dRatio()

const double HiggsChiral::BrH4dRatio ( ) const
virtual

The ratio of the Br \((H\to 4d)\) in the current model and in the Standard Model.

Returns
Br \((H\to 4d)\)/Br \((H\to 4d)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 805 of file HiggsChiral.cpp.

806{
807 return BrHZZRatio();
808}

◆ BrH4eRatio()

const double HiggsChiral::BrH4eRatio ( ) const
virtual

The ratio of the Br \((H\to 4e)\) in the current model and in the Standard Model.

Returns
Br \((H\to 4e)\)/Br \((H\to 4e)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 785 of file HiggsChiral.cpp.

786{
787 return BrHZZRatio();
788}

◆ BrH4fRatio()

const double HiggsChiral::BrH4fRatio ( ) const
virtual

The ratio of the Br \((H\to 4f)\) in the current model and in the Standard Model.

Returns
Br \((H\to 4f)\)/Br \((H\to 4f)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 860 of file HiggsChiral.cpp.

861{
862 double Br = 0.0;
863
864 // SM decay widths (from MG simulations)
865 double wH2L2LSM=0.65682e-06, wH2v2vSM=0.28126e-05, wH2L2vSM=0.27224e-05;
866 double wH2u2uSM=0.22500e-05, wH2d2dSM=0.11906e-04, wH2u2dSM=0.12361e-04;
867 double wH2L2uSM=0.45029e-05, wH2L2dSM=0.85830e-05, wH2v2uSM=0.93233e-05;
868 double wH2v2dSM=0.17794e-04, wH4LSM=0.33973e-06, wH4vSM=0.16884e-05;
869 double wH4uSM=0.23669e-05, wH4dSM=0.60254e-05;
870 double wHLvvLSM=0.58098e-04, wHudduSM=0.13384e-03, wHLvudSM=0.34149e-03 ;
871 double wH2udSM=0.13711e-03, wH2LvSM=0.27557e-04;
872
873 // Sum: SM
874 double wH4fSM=wH2L2LSM+wH2v2vSM+wH2L2vSM+wH2u2uSM+wH2d2dSM+wH2u2dSM+
875 wH2L2uSM+wH2L2dSM+wH2v2uSM+wH2v2dSM+wH4LSM+wH4vSM+wH4uSM+wH4dSM+wHLvvLSM+wHudduSM+
876 wHLvudSM+wH2udSM+wH2LvSM;
877
878 // Sum: SM+NP
879 double wH4f= (computecV() * computecV()) * (wH2L2LSM+wH2v2vSM+wH2L2vSM+wH2u2uSM+wH2d2dSM+wH2u2dSM
880 + wH2L2uSM+wH2L2dSM+wH2v2uSM+wH2v2dSM+wH4LSM+wH4vSM+wH4uSM+wH4dSM)
881 + (computecV() * computecV()) * (wHLvvLSM+wHudduSM
882 + wHLvudSM+wH2udSM+wH2LvSM);
883
884 Br = (wH4f/wH4fSM) / computeGammaTotalRatio();
885
886 return Br;
887}
virtual const double computecV() const
A method to compute the ratio of the coupling in the current model and in the SM.
virtual const double computeGammaTotalRatio() const
The ratio of the in the current model and in the Standard Model.

◆ BrH4L2Ratio()

const double HiggsChiral::BrH4L2Ratio ( ) const
virtual

The ratio of the Br \((H\to 4L)\) ( \(L=e,\mu\)) in the current model and in the Standard Model.

Returns
Br \((H\to 4L)\)/Br \((H\to 4L)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 780 of file HiggsChiral.cpp.

781{
782 return BrHZZRatio();
783}

◆ BrH4LRatio()

const double HiggsChiral::BrH4LRatio ( ) const
virtual

The ratio of the Br \((H\to 4L)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model.

Returns
Br \((H\to 4L)\)/Br \((H\to 4L)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 775 of file HiggsChiral.cpp.

776{
777 return BrHZZRatio();
778}

◆ BrH4lRatio()

const double HiggsChiral::BrH4lRatio ( ) const
virtual

The ratio of the Br \((H\to 4l)\) ( \(l=e,\mu\)) in the current model and in the Standard Model.

Returns
Br \((H\to 4l)\)/Br \((H\to 4l)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 891 of file HiggsChiral.cpp.

892{
893 return BrHZZRatio();
894}

◆ BrH4muRatio()

const double HiggsChiral::BrH4muRatio ( ) const
virtual

The ratio of the Br \((H\to 4\mu)\) in the current model and in the Standard Model.

Returns
Br \((H\to 4\mu)\)/Br \((H\to 4\mu)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 790 of file HiggsChiral.cpp.

791{
792 return BrHZZRatio();
793}

◆ BrH4uRatio()

const double HiggsChiral::BrH4uRatio ( ) const
virtual

The ratio of the Br \((H\to 4u)\) in the current model and in the Standard Model.

Returns
Br \((H\to 4u)\)/Br \((H\to 4u)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 800 of file HiggsChiral.cpp.

801{
802 return BrHZZRatio();
803}

◆ BrH4vRatio()

const double HiggsChiral::BrH4vRatio ( ) const
virtual

The ratio of the Br \((H\to 4v)\) in the current model and in the Standard Model.

Returns
Br \((H\to 4v)\)/Br \((H\to 4v)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 795 of file HiggsChiral.cpp.

796{
797 return BrHZZRatio();
798}

◆ BrHbbRatio()

const double HiggsChiral::BrHbbRatio ( ) const
virtual

The ratio of the Br \((H\to b\bar{b})\) in the current model and in the Standard Model.

Returns
Br \((H\to b\bar{b})\)/Br \((H\to b\bar{b})_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 696 of file HiggsChiral.cpp.

697{
698// return Gammabb() / GammaTotal() / trueSM.computeBrHtobb();
699
700 return (computecb() * computecb() / computeGammaTotalRatio());
701}
virtual const double computecb() const
A method to compute the ratio of the coupling in the current model and in the SM.

◆ BrHccRatio()

const double HiggsChiral::BrHccRatio ( ) const
virtual

The ratio of the Br \((H\to c\bar{c})\) in the current model and in the Standard Model.

Returns
Br \((H\to c\bar{c})\)/Br \((H\to c\bar{c})_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 682 of file HiggsChiral.cpp.

683{
684// return Gammacc() / GammaTotal() / trueSM.computeBrHtocc();
685
686 return (computecc() * computecc() / computeGammaTotalRatio());
687}
virtual const double computecc() const
A method to compute the ratio of the coupling in the current model and in the SM.

◆ BrHevmuvRatio()

const double HiggsChiral::BrHevmuvRatio ( ) const
virtual

The ratio of the Br \((H\to e\nu \mu\nu)\) in the current model and in the Standard Model.

Returns
Br \((H\to e\nu \mu\nu)\)/Br \((H\to e\nu \mu\nu)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 815 of file HiggsChiral.cpp.

816{
817 return BrHWWRatio();
818}

◆ BrHgagaRatio()

const double HiggsChiral::BrHgagaRatio ( ) const
virtual

The ratio of the Br \((H\to \gamma\gamma)\) in the current model and in the Standard Model.

Returns
Br \((H\to \gamma\gamma)\)/Br \((H\to \gamma\gamma)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 661 of file HiggsChiral.cpp.

662{
663// return Gammagaga() / GammaTotal() / trueSM.computeBrHtogaga();
664
666}
virtual const double computecgaga() const
A method to compute the ratio of the coupling in the current model and in the SM.

◆ BrHggRatio()

const double HiggsChiral::BrHggRatio ( ) const
virtual

The ratio of the Br \((H\to gg)\) in the current model and in the Standard Model.

Returns
Br \((H\to gg)\)/Br \((H\to gg)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 605 of file HiggsChiral.cpp.

606{
607// return Gammagg() / GammaTotal() / trueSM.computeBrHtogg();
608
609 return (computecg() * computecg() / computeGammaTotalRatio());
610}
virtual const double computecg() const
A method to compute the ratio of the coupling in the current model and in the SM.

◆ BrHll_vvorjjRatio()

virtual const double HiggsChiral::BrHll_vvorjjRatio ( ) const
inlinevirtual

The ratio of the Br \((H\to l l \nu\nu, l l j j)\), \(l=e,\mu,~~j\not=b)\) in the current model and in the Standard Model.

Returns
Br \((H\to l l \nu\nu, l l j j)\)/Br \((H\to l l \nu\nu, l l j j)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 964 of file HiggsChiral.h.

965 {
966 return BrHZZRatio();
967 }

◆ BrHlljjRatio()

virtual const double HiggsChiral::BrHlljjRatio ( ) const
inlinevirtual

The ratio of the Br \((H\to l l j j)\), \(l=e,\mu,~~j\not=b)\) in the current model and in the Standard Model.

Returns
Br \((H\to l l j j)\)/Br \((H\to l l j j)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 937 of file HiggsChiral.h.

938 {
939 return BrHZZRatio();
940 }

◆ BrHlv_lvorjjRatio()

virtual const double HiggsChiral::BrHlv_lvorjjRatio ( ) const
inlinevirtual

The ratio of the Br \((H\to l \nu l \nu, l \nu j j)\), \(l=e,\mu,~~j\not=b)\) in the current model and in the Standard Model.

Returns
Br \((H\to l \nu l \nu, l \nu j j)\)/Br \((H\to l \nu l \nu, l \nu j j)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 955 of file HiggsChiral.h.

956 {
957 return BrHWWRatio();
958 }

◆ BrHlvjjRatio()

virtual const double HiggsChiral::BrHlvjjRatio ( ) const
inlinevirtual

The ratio of the Br \((H\to l \nu j j)\), \(l=e,\mu,~~j\not=b)\) in the current model and in the Standard Model.

Returns
Br \((H\to l \nu j j)\)/Br \((H\to l \nu j j)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 946 of file HiggsChiral.h.

947 {
948 return BrHWWRatio();
949 }

◆ BrHLvudRatio()

const double HiggsChiral::BrHLvudRatio ( ) const
virtual

The ratio of the Br \((H\to Lvud)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model.

Returns
Br \((H\to Lvud)\)/Br \((H\to Lvud)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 825 of file HiggsChiral.cpp.

826{
827 return BrHWWRatio();
828}

◆ BrHLvvLRatio()

const double HiggsChiral::BrHLvvLRatio ( ) const
virtual

The ratio of the Br \((H\to LvvL)\) ( \(L=e,\mu,\tau\)) in the current model and in the Standard Model.

Returns
Br \((H\to LvvL)\)/Br \((H\to LvvL)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 810 of file HiggsChiral.cpp.

811{
812 return BrHWWRatio();
813}

◆ BrHmumuRatio()

const double HiggsChiral::BrHmumuRatio ( ) const
virtual

The ratio of the Br \((H\to \mu^+\mu^-)\) in the current model and in the Standard Model.

Returns
Br \((H\to \mu^+\mu^-)\)/Br \((H\to \mu^+\mu^-)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 668 of file HiggsChiral.cpp.

669{
670// return Gammamumu() / GammaTotal() / trueSM.computeBrHtomumu();
671
673}
virtual const double computecmu() const
A method to compute the ratio of the coupling in the current model and in the SM.

◆ BrHssRatio()

const double HiggsChiral::BrHssRatio ( ) const
virtual

The ratio of the Br \((H\to s\bar{s})\) in the current model and in the Standard Model.

Returns
Br \((H\to s\bar{s})\)/Br \((H\to s\bar{s})_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 689 of file HiggsChiral.cpp.

690{
691// return Gammass() / GammaTotal() / trueSM.computeBrHtocc();
692
693 return (computecs() * computecs() / computeGammaTotalRatio());
694}
virtual const double computecs() const
A method to compute the ratio of the coupling in the current model and in the SM.

◆ BrHtautauRatio()

const double HiggsChiral::BrHtautauRatio ( ) const
virtual

The ratio of the Br \((H\to \tau^+\tau^-)\) in the current model and in the Standard Model.

Returns
Br \((H\to \tau^+\tau^-)\)/Br \((H\to \tau^+\tau^-)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 675 of file HiggsChiral.cpp.

676{
677// return Gammatautau() / GammaTotal() / trueSM.computeBrHtotautau();
678
680}
virtual const double computectau() const
A method to compute the ratio of the coupling in the current model and in the SM.

◆ BrHtoinvRatio()

const double HiggsChiral::BrHtoinvRatio ( ) const
virtual

The ratio of the Br \((H\to invisible)\) in the current model and in the Standard Model.

Returns
Br \((H\to invisible)\)/Br \((H\to ZZ \to invisible)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 902 of file HiggsChiral.cpp.

903{
904// No extra decays so it scales as the H->ZZ
905
906 return BrHZZRatio();
907}

◆ BrHudduRatio()

const double HiggsChiral::BrHudduRatio ( ) const
virtual

The ratio of the Br \((H\to uddu)\) in the current model and in the Standard Model.

Returns
Br \((H\to uddu)\)/Br \((H\to uddu)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 820 of file HiggsChiral.cpp.

821{
822 return BrHWWRatio();
823}

◆ BrHVVRatio()

const double HiggsChiral::BrHVVRatio ( ) const
virtual

The ratio of the Br \((H\to VV)\) in the current model and in the Standard Model.

Returns
Br \((H\to VV)\)/Br \((H\to VV)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 626 of file HiggsChiral.cpp.

627{
628 double BrZZSM = trueSM.computeBrHtoZZ(), BrWWSM = trueSM.computeBrHtoWW();
629
630 return (BrZZSM * BrHZZRatio() + BrWWSM * BrHWWRatio() )/(BrZZSM + BrWWSM);
631}
StandardModel trueSM
Definition: NPbase.h:5731
const double computeBrHtoZZ() const
The Br in the Standard Model.
const double computeBrHtoWW() const
The Br in the Standard Model.

◆ BrHWWRatio()

const double HiggsChiral::BrHWWRatio ( ) const
virtual

The ratio of the Br \((H\to WW)\) in the current model and in the Standard Model.

Returns
Br \((H\to WW)\)/Br \((H\to WW)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 612 of file HiggsChiral.cpp.

613{
614// return GammaWW() / GammaTotal() / trueSM.computeBrHtoWW();
615
616 return (computecV() * computecV() / computeGammaTotalRatio());
617}

◆ BrHZgaeeRatio()

const double HiggsChiral::BrHZgaeeRatio ( ) const
virtual

The ratio of the Br \((H\to Z\gamma\to ee\gamma)\) in the current model and in the Standard Model.

Returns
Br \((H\to Z\gamma\to ee\gamma)\)/Br \((H\to Z\gamma\to ee\gamma)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 647 of file HiggsChiral.cpp.

648{
649// return GammaZga() / GammaTotal() / trueSM.computeBrHtoZga();
650
651 return BrHZgaRatio();
652}
virtual const double BrHZgaRatio() const
The ratio of the Br in the current model and in the Standard Model.

◆ BrHZgallRatio()

const double HiggsChiral::BrHZgallRatio ( ) const
virtual

The ratio of the Br \((H\to Z\gamma\to ll\gamma)\) ( \(l=e,\mu \)) in the current model and in the Standard Model.

Returns
Br \((H\to Z\gamma\to ll\gamma)\)/Br \((H\to Z\gamma\to ll\gamma)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 640 of file HiggsChiral.cpp.

641{
642// return GammaZga() / GammaTotal() / trueSM.computeBrHtoZga();
643
644 return BrHZgaRatio();
645}

◆ BrHZgamumuRatio()

const double HiggsChiral::BrHZgamumuRatio ( ) const
virtual

The ratio of the Br \((H\to Z\gamma\to \mu\mu\gamma)\) in the current model and in the Standard Model.

Returns
Br \((H\to Z\gamma\to \mu\mu\gamma)\)/Br \((H\to Z\gamma\to \mu\mu\gamma)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 654 of file HiggsChiral.cpp.

655{
656// return GammaZga() / GammaTotal() / trueSM.computeBrHtoZga();
657
658 return BrHZgaRatio();
659}

◆ BrHZgaRatio()

const double HiggsChiral::BrHZgaRatio ( ) const
virtual

The ratio of the Br \((H\to Z\gamma)\) in the current model and in the Standard Model.

Returns
Br \((H\to Z\gamma)\)/Br \((H\to Z\gamma)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 633 of file HiggsChiral.cpp.

634{
635// return GammaZga() / GammaTotal() / trueSM.computeBrHtoZga();
636
638}
virtual const double computecZga() const
A method to compute the ratio of the coupling in the current model and in the SM.

◆ BrHZZRatio()

const double HiggsChiral::BrHZZRatio ( ) const
virtual

The ratio of the Br \((H\to ZZ)\) in the current model and in the Standard Model.

Returns
Br \((H\to ZZ)\)/Br \((H\to ZZ)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 619 of file HiggsChiral.cpp.

620{
621// return GammaZZ() / GammaTotal() / trueSM.computeBrHtoZZ();
622
623 return (computecV() * computecV() / computeGammaTotalRatio());
624}

◆ cbminuscc()

const double HiggsChiral::cbminuscc ( ) const
virtual

The value of \(c_b - c_c\).

Returns
\(c_b - c_c\)

Reimplemented from NPbase.

Definition at line 466 of file HiggsChiral.cpp.

467{
468 return cb - cc;
469}

◆ cbminusctau()

const double HiggsChiral::cbminusctau ( ) const
virtual

The value of \(c_b - c_\tau\).

Returns
\(c_b - c_\tau\)

Reimplemented from NPbase.

Definition at line 471 of file HiggsChiral.cpp.

472{
473 return cb - ctau;
474}

◆ ccminusctau()

const double HiggsChiral::ccminusctau ( ) const
virtual

The value of \(c_c - c_\tau\).

Returns
\(c_c - c_\tau\)

Reimplemented from NPbase.

Definition at line 476 of file HiggsChiral.cpp.

477{
478 return cc - ctau;
479}

◆ cgaplusct()

const double HiggsChiral::cgaplusct ( ) const
virtual

The value of \(c_\gamma + c_t\).

Returns
\(c_\gamma + c_t\)

Reimplemented from NPbase.

Definition at line 446 of file HiggsChiral.cpp.

447{
448 return cga + ct;
449}

◆ cgminuscga()

const double HiggsChiral::cgminuscga ( ) const
virtual

The value of \(c_g - c_\gamma\).

Returns
\(c_g - c_\gamma\)

Reimplemented from NPbase.

Definition at line 451 of file HiggsChiral.cpp.

452{
453 return cg - cga;
454}

◆ cgplusct()

const double HiggsChiral::cgplusct ( ) const
virtual

The value of \(c_g + c_t\).

Returns
\(c_g + c_t\)

Reimplemented from NPbase.

Definition at line 441 of file HiggsChiral.cpp.

442{
443 return cg + ct;
444}

◆ CheckParameters()

bool HiggsChiral::CheckParameters ( const std::map< std::string, double > &  DPars)
virtual

A method to check if all the mandatory parameters for HiggsChiral have been provided in model initialization.

Parameters
[in]DParsa map of the parameters that are being updated in the Monte Carlo run (including parameters that are varied and those that are held constant)
Returns
a boolean that is true if the execution is successful

Reimplemented from StandardModel.

Definition at line 125 of file HiggsChiral.cpp.

126{
127 for (int i = 0; i < NHChiralvars; i++) {
128 if (DPars.find(HChiralvars[i]) == DPars.end()) {
129 std::cout << "ERROR: missing mandatory HiggsChiral parameter " << HChiralvars[i] << std::endl;
132 }
133 }
135}
std::map< std::string, double > DPars
Definition: Minimal.cpp:11
static const std::string HChiralvars[NHChiralvars]
A string array containing the labels of the model parameters in HiggsKvKf.
Definition: HiggsChiral.h:117
static const int NHChiralvars
The number of the model parameters.
Definition: HiggsChiral.h:112
void addMissingModelParameter(const std::string &missingParameterName)
Definition: Model.h:250
void raiseMissingModelParameterCount()
Definition: Model.h:260
virtual bool CheckParameters(const std::map< std::string, double > &DPars)
A method to check if all the mandatory parameters for StandardModel have been provided in model initi...

◆ computecb()

const double HiggsChiral::computecb ( ) const
protectedvirtual

A method to compute the ratio of the \(Hbb\) coupling in the current model and in the SM.

Returns
the ratio of the \(Hbb\) coupling in the current model and in the SM

Definition at line 1739 of file HiggsChiral.cpp.

1740{
1741 return cb;
1742}

◆ computecc()

const double HiggsChiral::computecc ( ) const
protectedvirtual

A method to compute the ratio of the \(Hcc\) coupling in the current model and in the SM.

Returns
the ratio of the \(Hcc\) coupling in the current model and in the SM

Definition at line 1724 of file HiggsChiral.cpp.

1725{
1726 return cc;
1727}

◆ computecg()

const double HiggsChiral::computecg ( ) const
protectedvirtual

A method to compute the ratio of the \(Hgg\) coupling in the current model and in the SM.

Returns
the ratio of the \(Hgg\) coupling in the current model and in the SM

Definition at line 1590 of file HiggsChiral.cpp.

1591{
1592 if (loopComputed) return cg_loop;
1593
1594 double Mt=trueSM.getQuarks(QCD::TOP).getMass();
1595 double Mb=trueSM.getQuarks(QCD::BOTTOM).getMass();
1596 double Mc=trueSM.getQuarks(QCD::CHARM).getMass();
1597 double Ms=trueSM.getQuarks(QCD::STRANGE).getMass();
1598 double TAUt=4.0*Mt*Mt/(mHl*mHl);
1599 double TAUb=4.0*Mb*Mb/(mHl*mHl);
1600 double TAUc=4.0*Mc*Mc/(mHl*mHl);
1601 double TAUs=4.0*Ms*Ms/(mHl*mHl);
1602 double cgEff;
1603
1604 cgEff = ( ( ct * 0.5*TAUt*(1.0+(1.0-TAUt)*f_func(TAUt))
1605 +cb * 0.5*TAUb*(1.0+(1.0-TAUb)*f_func(TAUb))
1606 +cc * 0.5*TAUc*(1.0+(1.0-TAUc)*f_func(TAUc))
1607 +cs * 0.5*TAUs*(1.0+(1.0-TAUs)*f_func(TAUs)) ) * (1.0+11.0*AlsMz/(4.0*M_PI))
1608 +cg * 0.5 ).abs2();
1609
1610 cgEff = cgEff / ( ( 0.5*TAUt*(1.0+(1.0-TAUt)*f_func(TAUt))
1611 + 0.5*TAUb*(1.0+(1.0-TAUb)*f_func(TAUb))
1612 + 0.5*TAUc*(1.0+(1.0-TAUc)*f_func(TAUc))
1613 + 0.5*TAUs*(1.0+(1.0-TAUs)*f_func(TAUs)) ) * (1.0+11.0*AlsMz/(4.0*M_PI))).abs2();
1614
1615 return (sqrt(cgEff));
1616}
gslpp::complex f_func(const double x) const
const double & getMass() const
A get method to access the particle mass.
Definition: Particle.h:61
@ BOTTOM
Definition: QCD.h:329
@ TOP
Definition: QCD.h:328
@ STRANGE
Definition: QCD.h:327
@ CHARM
Definition: QCD.h:326
const Particle & getQuarks(const QCD::quark q) const
A get method to access a quark as an object of the type Particle.
Definition: QCD.h:536
double mHl
The Higgs mass in GeV.
double AlsMz
The strong coupling constant at the Z-boson mass, .

◆ computecgaga()

const double HiggsChiral::computecgaga ( ) const
protectedvirtual

A method to compute the ratio of the \(H\gamma\gamma\) coupling in the current model and in the SM.

Returns
the ratio of the \(H\gamma\gamma\) coupling in the current model and in the SM

Definition at line 1674 of file HiggsChiral.cpp.

1675{
1676 if (loopComputed) return cga_loop;
1677
1678 double Mt=trueSM.getQuarks(QCD::TOP).getMass();
1679 double Mb=trueSM.getQuarks(QCD::BOTTOM).getMass();
1680 double Mc=trueSM.getQuarks(QCD::CHARM).getMass();
1681 double Ms=trueSM.getQuarks(QCD::STRANGE).getMass();
1684 double MW=trueSM.Mw_tree();
1685 double TAUt=4.0*Mt*Mt/(mHl*mHl);
1686 double TAUb=4.0*Mb*Mb/(mHl*mHl);
1687 double TAUc=4.0*Mc*Mc/(mHl*mHl);
1688 double TAUs=4.0*Ms*Ms/(mHl*mHl);
1689 double TAUtau=4.0*Mtau*Mtau/(mHl*mHl);
1690 double TAUmu=4.0*Mmu*Mmu/(mHl*mHl);
1691 double TAUw=4.0*MW*MW/(mHl*mHl);
1692 double cgagaEff;
1693
1694 cgagaEff = ( ct * (8./3.)*TAUt*(1.+(1.-TAUt)*f_func(TAUt)) * (1.0-AlsMz/M_PI)
1695 +cb * (2./3.)*TAUb*(1.+(1.-TAUb)*f_func(TAUb))
1696 +cc * (8./3.)*TAUc*(1.+(1.-TAUc)*f_func(TAUc))
1697 +cs * (2./3.)*TAUs*(1.+(1.-TAUs)*f_func(TAUs))
1698 +ctau * 2.0*TAUtau*(1.+(1.-TAUtau)*f_func(TAUtau))
1699 +cmu * 2.0*TAUmu*(1.+(1.-TAUmu)*f_func(TAUmu))
1700 -cv * (2.0+3.0*TAUw+3.0*TAUw*(2.0-TAUw)*f_func(TAUw))
1701 +cga * 2.0 ).abs2();
1702
1703 cgagaEff = cgagaEff / ( (8./3.)*TAUt*(1.+(1.-TAUt)*f_func(TAUt)) * (1.0-AlsMz/M_PI)
1704 + (2./3.)*TAUb*(1.+(1.-TAUb)*f_func(TAUb))
1705 + (8./3.)*TAUc*(1.+(1.-TAUc)*f_func(TAUc))
1706 + (2./3.)*TAUs*(1.+(1.-TAUs)*f_func(TAUs))
1707 + 2.0*TAUtau*(1.+(1.-TAUtau)*f_func(TAUtau))
1708 + 2.0*TAUmu*(1.+(1.-TAUmu)*f_func(TAUmu))
1709 - (2.0+3.0*TAUw+3.0*TAUw*(2.0-TAUw)*f_func(TAUw)) ).abs2();
1710
1711 return (sqrt(cgagaEff));
1712}
@ MU
Definition: QCD.h:314
@ TAU
Definition: QCD.h:316
const Particle & getLeptons(const QCD::lepton p) const
A get method to retrieve the member object of a lepton.
const double Mw_tree() const
The tree-level mass of the boson, .

◆ computecmu()

const double HiggsChiral::computecmu ( ) const
protectedvirtual

A method to compute the ratio of the \(H\mu\mu\) coupling in the current model and in the SM.

Returns
the ratio of the \(H\mu\mu\) coupling in the current model and in the SM

Definition at line 1714 of file HiggsChiral.cpp.

1715{
1716 return cmu;
1717}

◆ computecs()

const double HiggsChiral::computecs ( ) const
protectedvirtual

A method to compute the ratio of the \(Hss\) coupling in the current model and in the SM.

Returns
the ratio of the \(Hss\) coupling in the current model and in the SM

Definition at line 1729 of file HiggsChiral.cpp.

1730{
1731 return cs;
1732}

◆ computect()

const double HiggsChiral::computect ( ) const
protectedvirtual

A method to compute the ratio of the \(Htt\) coupling in the current model and in the SM.

Returns
the ratio of the \(Htt\) coupling in the current model and in the SM

Definition at line 1734 of file HiggsChiral.cpp.

1735{
1736 return ct;
1737}

◆ computectau()

const double HiggsChiral::computectau ( ) const
protectedvirtual

A method to compute the ratio of the \(H\tau\tau\) coupling in the current model and in the SM.

Returns
the ratio of the \(H\tau\tau\) coupling in the current model and in the SM

Definition at line 1719 of file HiggsChiral.cpp.

1720{
1721 return ctau;
1722}

◆ computecV()

const double HiggsChiral::computecV ( ) const
protectedvirtual

A method to compute the ratio of the \(HVV\) coupling in the current model and in the SM.

Returns
the ratio of the \(HWW\) coupling in the current model and in the SM

Definition at line 1618 of file HiggsChiral.cpp.

1619{
1620 return cv;
1621}

◆ computecZga()

const double HiggsChiral::computecZga ( ) const
protectedvirtual

A method to compute the ratio of the \(HZ\gamma\) coupling in the current model and in the SM.

Returns
the ratio of the \(HZ\gamma\) coupling in the current model and in the SM

Definition at line 1623 of file HiggsChiral.cpp.

1624{
1625 if (loopComputed) return cZga_loop;
1626
1627 double Mt=trueSM.getQuarks(QCD::TOP).getMass();
1628 double Mb=trueSM.getQuarks(QCD::BOTTOM).getMass();
1629 double Mc=trueSM.getQuarks(QCD::CHARM).getMass();
1630 double Ms=trueSM.getQuarks(QCD::STRANGE).getMass();
1633 double MW=trueSM.Mw_tree();
1634 double cW2=trueSM.c02();
1635 double sW2=1.0-cW2;
1636 double TAUt=4.0*Mt*Mt/(mHl*mHl);
1637 double TAUb=4.0*Mb*Mb/(mHl*mHl);
1638 double TAUc=4.0*Mc*Mc/(mHl*mHl);
1639 double TAUs=4.0*Ms*Ms/(mHl*mHl);
1640 double TAUtau=4.0*Mtau*Mtau/(mHl*mHl);
1641 double TAUmu=4.0*Mmu*Mmu/(mHl*mHl);
1642 double TAUw=4.0*MW*MW/(mHl*mHl);
1643 double LAMt=4.0*Mt*Mt/(Mz*Mz);
1644 double LAMb=4.0*Mb*Mb/(Mz*Mz);
1645 double LAMc=4.0*Mc*Mc/(Mz*Mz);
1646 double LAMs=4.0*Ms*Ms/(Mz*Mz);
1647 double LAMtau=4.0*Mtau*Mtau/(Mz*Mz);
1648 double LAMmu=4.0*Mmu*Mmu/(Mz*Mz);
1649 double LAMw=4.0*MW*MW/(Mz*Mz);
1650 double cZgaEff;
1651
1652 cZgaEff = ((-ct * 4.0*(0.5-4.0/3.0*sW2)*(Int1(TAUt,LAMt)-Int2(TAUt,LAMt)) * (1.0-AlsMz/M_PI)
1653 +cb * 2.0*(-0.5+2.0/3.0*sW2)*(Int1(TAUb,LAMb)-Int2(TAUb,LAMb))
1654 -cc * 4.0*(0.5-4.0/3.0*sW2)*(Int1(TAUc,LAMc)-Int2(TAUc,LAMc))
1655 +cs * 2.0*(-0.5+2.0/3.0*sW2)*(Int1(TAUs,LAMs)-Int2(TAUs,LAMs))
1656 +ctau * 2.0*(-0.5+2.0*sW2)*(Int1(TAUtau,LAMtau)-Int2(TAUtau,LAMtau))
1657 +cmu * 2.0*(-0.5+2.0*sW2)*(Int1(TAUmu,LAMmu)-Int2(TAUmu,LAMmu)) )/sqrt(sW2*cW2)
1658 -cv * sqrt(cW2/sW2)*(4.0*(3.0-sW2/cW2)*Int2(TAUw,LAMw)
1659 +((1.0+2.0/TAUw)*sW2/cW2-(5.0+2.0/TAUw))*Int1(TAUw,LAMw))
1660 +cZga).abs2();
1661
1662 cZgaEff = cZgaEff / ((-4.0*(0.5-4.0/3.0*sW2)*(Int1(TAUt,LAMt)-Int2(TAUt,LAMt)) * (1.0-AlsMz/M_PI)
1663 + 2.0*(-0.5+2.0/3.0*sW2)*(Int1(TAUb,LAMb)-Int2(TAUb,LAMb))
1664 - 4.0*(0.5-4.0/3.0*sW2)*(Int1(TAUc,LAMc)-Int2(TAUc,LAMc))
1665 + 2.0*(-0.5+2.0/3.0*sW2)*(Int1(TAUs,LAMs)-Int2(TAUs,LAMs))
1666 + 2.0*(-0.5+2.0*sW2)*(Int1(TAUtau,LAMtau)-Int2(TAUtau,LAMtau))
1667 + 2.0*(-0.5+2.0*sW2)*(Int1(TAUmu,LAMmu)-Int2(TAUmu,LAMmu)) )/sqrt(sW2*cW2)
1668 - sqrt(cW2/sW2)*(4.0*(3.0-sW2/cW2)*Int2(TAUw,LAMw)
1669 +((1.0+2.0/TAUw)*sW2/cW2-(5.0+2.0/TAUw))*Int1(TAUw,LAMw))).abs2();
1670
1671 return (sqrt(cZgaEff));
1672}
gslpp::complex Int1(const double tau, const double lambda) const
gslpp::complex Int2(const double tau, const double lambda) const
double Mz
The mass of the boson in GeV.
const double c02() const
The square of the cosine of the weak mixing angle defined without weak radiative corrections.
virtual const double cW2() const

◆ computeGammaTotalRatio()

const double HiggsChiral::computeGammaTotalRatio ( ) const
virtual

The ratio of the \(\Gamma(H)\) in the current model and in the Standard Model.

Returns
\(\Gamma(H)\)/ \(\Gamma(H)_{\mathrm{SM}}\)

Reimplemented from NPbase.

Definition at line 1561 of file HiggsChiral.cpp.

1562{
1563
1564 return ((computecg() * computecg() * trueSM.computeBrHtogg()
1583 + trueSM.computeBrHtobb()));
1584
1585// return (GammaTotal() / trueSM.computeGammaHTotal());
1586}
const double computeBrHtomumu() const
The Br in the Standard Model.
const double computeBrHtocc() const
The Br in the Standard Model.
const double computeBrHtotautau() const
The Br in the Standard Model.
const double computeBrHtobb() const
The Br in the Standard Model.
const double computeBrHtogg() const
The Br in the Standard Model.
const double computeBrHtoZga() const
The Br in the Standard Model.
const double computeBrHtogaga() const
The Br in the Standard Model.
const double computeBrHtoss() const
The Br in the Standard Model.

◆ cVpluscb()

const double HiggsChiral::cVpluscb ( ) const
virtual

The value of \(c_V + c_b\).

Returns
\(c_V + c_b\)

Reimplemented from NPbase.

Definition at line 456 of file HiggsChiral.cpp.

457{
458 return cv + cb;
459}

◆ cVplusctau()

const double HiggsChiral::cVplusctau ( ) const
virtual

The value of \(c_V + c_\tau\).

Returns
\(c_V + c_\tau\)

Reimplemented from NPbase.

Definition at line 461 of file HiggsChiral.cpp.

462{
463 return cv + ctau;
464}

◆ deltaG1_hWW()

const double HiggsChiral::deltaG1_hWW ( ) const
virtual

The new physics contribution to the coupling of the effective interaction \(H W_{\mu\nu}^\dagger W^{\mu\nu}\).

Returns
\(\delta g_{HWW}^{(1)}\)

Reimplemented from NPbase.

Definition at line 1757 of file HiggsChiral.cpp.

1757 {
1758 return 0.0;
1759}

◆ deltaG1_hZA()

const double HiggsChiral::deltaG1_hZA ( ) const
virtual

The new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} F^{\mu\nu}\).

Returns
\(\delta g_{HZA}^{(1)}\)

Reimplemented from NPbase.

Definition at line 1787 of file HiggsChiral.cpp.

1787 {
1788 // Not needed/implemented yet
1789 return 0.0;
1790}

◆ deltaG1_hZARatio()

const double HiggsChiral::deltaG1_hZARatio ( ) const
virtual

The full new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} F^{A \mu\nu}\), including new local terms and modifications on the SM-loops. Normalized to the SM value.

Returns
\(\delta g_{HZA}^{(1)}/g_{HZA}^{(1),SM}\)

Reimplemented from NPbase.

Definition at line 1792 of file HiggsChiral.cpp.

1792 {
1793 return (computecZga() - 1.0);
1794}

◆ deltaG1_hZZ()

const double HiggsChiral::deltaG1_hZZ ( ) const
virtual

The new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} Z^{\mu\nu}\).

Returns
\(\delta g_{HZZ}^{(1)}\)

Reimplemented from NPbase.

Definition at line 1772 of file HiggsChiral.cpp.

1772 {
1773 return 0.0;
1774}

◆ deltaG2_hWW()

const double HiggsChiral::deltaG2_hWW ( ) const
virtual

The new physics contribution to the coupling of the effective interaction \(H W_{\nu}^\dagger \partial^\mu W^{\mu\nu}\).

Returns
\(\delta g_{HWW}^{(2)}\)

Reimplemented from NPbase.

Definition at line 1761 of file HiggsChiral.cpp.

1761 {
1762 return 0.0;
1763}

◆ deltaG2_hZA()

const double HiggsChiral::deltaG2_hZA ( ) const
virtual

The new physics contribution to the coupling of the effective interaction \(H Z_{\nu} \partial^\mu F^{\mu\nu}\).

Returns
\(\delta g_{HZA}^{(2)}\)

Reimplemented from NPbase.

Definition at line 1796 of file HiggsChiral.cpp.

1796 {
1797 return 0.0;
1798}

◆ deltaG2_hZZ()

const double HiggsChiral::deltaG2_hZZ ( ) const
virtual

The new physics contribution to the coupling of the effective interaction \(H Z_{\nu} \partial^\mu Z^{\mu\nu}\).

Returns
\(\delta g_{HZZ}^{(2)}\)

Reimplemented from NPbase.

Definition at line 1776 of file HiggsChiral.cpp.

1776 {
1777 return 0.0;
1778}

◆ deltaG3_hWW()

const double HiggsChiral::deltaG3_hWW ( ) const
virtual

The new physics contribution to the coupling of the effective interaction \(H W_{\mu}^\dagger W^{\mu}\).

Returns
\(\delta g_{HWW}^{(3)}\)

Reimplemented from NPbase.

Definition at line 1765 of file HiggsChiral.cpp.

1765 {
1766
1767 double gSM = 2.0 * (trueSM.Mw_tree())* (trueSM.Mw_tree()) / (trueSM.v());
1768
1769 return ( gSM * (computecV() - 1.0 ) );
1770}
const double v() const
The Higgs vacuum expectation value.

◆ deltaG3_hZZ()

const double HiggsChiral::deltaG3_hZZ ( ) const
virtual

The new physics contribution to the coupling of the effective interaction \(H Z_{\mu} Z^{\mu}\).

Returns
\(\delta g_{HZZ}^{(3)}\)

Reimplemented from NPbase.

Definition at line 1780 of file HiggsChiral.cpp.

1780 {
1781
1782 double gSM = (trueSM.getMz()) * (trueSM.getMz()) / (trueSM.v());
1783
1784 return ( gSM * (computecV() - 1.0 ) );
1785}
const double getMz() const
A get method to access the mass of the boson .

◆ deltaG_hAA()

const double HiggsChiral::deltaG_hAA ( ) const
virtual

The new physics contribution to the coupling of the effective interaction \(H F_{\mu\nu} F^{\mu\nu}\).

Returns
\(\delta g_{HAA}\)

Reimplemented from NPbase.

Definition at line 1800 of file HiggsChiral.cpp.

1800 {
1801 // Not needed/implemented yet
1802 return 0.0;
1803}

◆ deltaG_hAARatio()

const double HiggsChiral::deltaG_hAARatio ( ) const
virtual

The full new physics contribution to the coupling of the effective interaction \(H F_{\mu\nu} F^{\mu\nu}\), including new local terms and modifications on the SM-loops. Normalized to the SM value.

Returns
\(\delta g_{HAA}/g_{HAA}^SM}\)

Reimplemented from NPbase.

Definition at line 1805 of file HiggsChiral.cpp.

1805 {
1806 return (computecgaga() - 1.0);
1807}

◆ deltaG_hff()

gslpp::complex HiggsChiral::deltaG_hff ( const Particle  p) const
virtual

The new physics contribution to the coupling of the effective interaction \(H f\bar{f}\).

Parameters
[in]pa lepton or quark
Returns
\(\delta g_{Hff}\)

Reimplemented from NPbase.

Definition at line 1809 of file HiggsChiral.cpp.

1809 {
1810
1811 double gSM = -(p.getMass()) / (trueSM.v());
1812
1813 if ( p.is("ELECTRON") ) {
1814 return ( 0.0 );
1815 } else if ( p.is("MU") ) {
1816 return ( gSM * (computecmu() - 1.0 ) );
1817 } else if ( p.is("TAU") ) {
1818 return ( gSM * (computectau() - 1.0 ) );
1819 } else if ( p.is("UP") ) {
1820 return ( 0.0 );
1821 } else if ( p.is("CHARM") ) {
1822 return ( gSM * (computecc() - 1.0 ) );
1823 } else if ( p.is("TOP") ) {
1824 return ( gSM * (computect() - 1.0 ) );
1825 } else if ( p.is("DOWN") ) {
1826 return ( 0.0 );
1827 } else if ( p.is("STRANGE") ) {
1828 return ( gSM * (computecs() - 1.0 ) );
1829 } else if ( p.is("BOTTOM") ) {
1830 return ( gSM * (computecb() - 1.0 ) );
1831 } else {
1832 return 0.0;
1833 }
1834}
virtual const double computect() const
A method to compute the ratio of the coupling in the current model and in the SM.
bool is(std::string name_i) const
Definition: Particle.cpp:23

◆ deltaG_hgg()

const double HiggsChiral::deltaG_hgg ( ) const
virtual

The new physics contribution to the coupling of the effective interaction \(H G_{\mu\nu}^AG^{A \mu\nu}\).

Returns
\(\delta g_{HGG}\)

Reimplemented from NPbase.

Definition at line 1747 of file HiggsChiral.cpp.

1748{
1749 // Not needed/implemented yet
1750 return 0.0;
1751}

◆ deltaG_hggRatio()

const double HiggsChiral::deltaG_hggRatio ( ) const
virtual

The full new physics contribution to the coupling of the effective interaction \(H G_{\mu\nu}^AG^{A \mu\nu}\), including new local terms and modifications on the SM-loops. Normalized to the SM value.

Returns
\(\delta g_{HGG}/g_{HGG}^SM}\)

Reimplemented from NPbase.

Definition at line 1753 of file HiggsChiral.cpp.

1753 {
1754 return (computecg() - 1.0);
1755}

◆ f_func()

gslpp::complex HiggsChiral::f_func ( const double  x) const
private

Definition at line 1890 of file HiggsChiral.cpp.

1890 {
1891 if(x<1) {
1892 gslpp::complex z = -gslpp::complex::i()*M_PI;
1893 return -pow(log((1+sqrt(1-x))/(1-sqrt(1-x)))+z,2)/4.0;
1894 }
1895 else {
1896 return pow(asin(sqrt(1.0/x)),2);
1897 }
1898}

◆ g_func()

gslpp::complex HiggsChiral::g_func ( const double  x) const
private

Definition at line 1900 of file HiggsChiral.cpp.

1900 {
1901 if(x<1) {
1902 gslpp::complex z = -gslpp::complex::i()*M_PI;
1903 gslpp::complex gs1 = sqrt(1.0-x)*(log((1.0+sqrt(1.0-x))/(1.0-sqrt(1.0-x)))+z)/2.0;
1904 return gs1;
1905 }
1906 else {
1907 gslpp::complex gg1 = sqrt(x-1.0)*asin(sqrt(1.0/x));
1908 return gg1;
1909 }
1910}

◆ Gammabb()

const double HiggsChiral::Gammabb ( ) const
virtual

The decay width \((H\to b \bar{b})\) in the current model.

Returns
\(\Gamma(H\to c \bar{c})\)

Definition at line 594 of file HiggsChiral.cpp.

595{
597}
const double computeGammaHTotal() const
The Higgs total width in the Standard Model.

◆ Gammacc()

const double HiggsChiral::Gammacc ( ) const
virtual

The decay width \((H\to c \bar{c})\) in the current model.

Returns
\(\Gamma(H\to c \bar{c})\)

Definition at line 584 of file HiggsChiral.cpp.

585{
587}

◆ Gammagaga()

const double HiggsChiral::Gammagaga ( ) const
virtual

The decay width \((H\to \gamma\gamma)\) in the current model.

Returns
\(\Gamma(H\to \gamma\gamma)\)

Definition at line 548 of file HiggsChiral.cpp.

549{
550 double Mt=trueSM.getQuarks(QCD::TOP).getMass();
551 double Mb=trueSM.getQuarks(QCD::BOTTOM).getMass();
552 double Mc=trueSM.getQuarks(QCD::CHARM).getMass();
555 double MW=trueSM.Mw_tree();
556 double TAUt=4.0*Mt*Mt/(mHl*mHl);
557 double TAUb=4.0*Mb*Mb/(mHl*mHl);
558 double TAUc=4.0*Mc*Mc/(mHl*mHl);
559 double TAUs=4.0*Ms*Ms/(mHl*mHl);
560 double TAUtau=4.0*Mtau*Mtau/(mHl*mHl);
561 double TAUw=4.0*MW*MW/(mHl*mHl);
562
563 double factor = GF*ale*ale*mHl*mHl*mHl/(sqrt(2.0)*128.0*M_PI*M_PI*M_PI);
564
565 return factor * ( ct * (8./3.)*TAUt*(1.+(1.-TAUt)*f_func(TAUt)) * (1.0-AlsMz/M_PI)
566 +cb * (2./3.)*TAUb*(1.+(1.-TAUb)*f_func(TAUb))
567 +cc * (8./3.)*TAUc*(1.+(1.-TAUc)*f_func(TAUc))
568 +cs * (2./3.)*TAUs*(1.+(1.-TAUs)*f_func(TAUs))
569 +ctau * 2.0*TAUtau*(1.+(1.-TAUtau)*f_func(TAUtau))
570 -cv * (2.0+3.0*TAUw+3.0*TAUw*(2.0-TAUw)*f_func(TAUw))
571 +cga * 2.0 ).abs2();
572}
double GF
The Fermi constant in .
double ale
The fine-structure constant .

◆ Gammagg()

const double HiggsChiral::Gammagg ( ) const
virtual

The decay width \((H\to gg)\) in the current model.

Returns
\(\Gamma(H\to gg)\)

Definition at line 481 of file HiggsChiral.cpp.

482{
483 double Mt=trueSM.getQuarks(QCD::TOP).getMass();
484 double Mb=trueSM.getQuarks(QCD::BOTTOM).getMass();
485 double Mc=trueSM.getQuarks(QCD::CHARM).getMass();
487 double TAUt=4.0*Mt*Mt/(mHl*mHl);
488 double TAUb=4.0*Mb*Mb/(mHl*mHl);
489 double TAUc=4.0*Mc*Mc/(mHl*mHl);
490 double TAUs=4.0*Ms*Ms/(mHl*mHl);
491
492 double factor = GF*AlsMz*AlsMz*mHl*mHl*mHl/(sqrt(2.0)*4.0*M_PI*M_PI*M_PI);
493
494 double ksoftNLO = 1.0 + (AlsMz/M_PI) * ( 73.0/4.0 -7.0*5.0/6.0);
495
496 return factor * ksoftNLO * ( ( ct * 0.5*TAUt*(1.0+(1.0-TAUt)*f_func(TAUt))
497 +cb * 0.5*TAUb*(1.0+(1.0-TAUb)*f_func(TAUb))
498 +cc * 0.5*TAUc*(1.0+(1.0-TAUc)*f_func(TAUc))
499 +cs * 0.5*TAUs*(1.0+(1.0-TAUs)*f_func(TAUs))) * (1.0+11.0*AlsMz/(4.0*M_PI))
500 +cg * 0.5 ).abs2();
501}

◆ Gammamumu()

const double HiggsChiral::Gammamumu ( ) const
virtual

The decay width \((H\to \mu^+ \mu^-)\) in the current model.

Returns
\(\Gamma(H\to \mu^+ \mu^-)\)

Definition at line 574 of file HiggsChiral.cpp.

◆ Gammass()

const double HiggsChiral::Gammass ( ) const
virtual

The decay width \((H\to s \bar{s})\) in the current model.

Returns
\(\Gamma(H\to s \bar{s})\)

Definition at line 589 of file HiggsChiral.cpp.

590{
592}

◆ Gammatautau()

const double HiggsChiral::Gammatautau ( ) const
virtual

The decay width \((H\to \tau^+ \tau^-)\) in the current model.

Returns
\(\Gamma(H\to \tau^+ \tau^-)\)

Definition at line 579 of file HiggsChiral.cpp.

◆ GammaTotal()

const double HiggsChiral::GammaTotal ( ) const
virtual

The total decay width of the Higgs boson in the current model.

Returns
\(\Gamma(H)\)

Definition at line 599 of file HiggsChiral.cpp.

600{
601 return Gammagg() + GammaWW() + GammaZZ() + GammaZga() + Gammagaga()
602 + Gammamumu() + Gammatautau() + Gammacc() + Gammass() + Gammabb();
603}
virtual const double Gammagg() const
The decay width in the current model.
virtual const double GammaZga() const
The decay width in the current model.
virtual const double Gammabb() const
The decay width in the current model.
virtual const double Gammatautau() const
The decay width in the current model.
virtual const double Gammass() const
The decay width in the current model.
virtual const double Gammacc() const
The decay width in the current model.
virtual const double Gammamumu() const
The decay width in the current model.
virtual const double GammaWW() const
The decay width in the current model.
virtual const double GammaZZ() const
The decay width in the current model.
virtual const double Gammagaga() const
The decay width in the current model.

◆ GammaWW()

const double HiggsChiral::GammaWW ( ) const
virtual

The decay width \((H\to WW)\) in the current model.

Returns
\(\Gamma(H\to WW)\)

Definition at line 503 of file HiggsChiral.cpp.

504{
506}

◆ GammaZga()

const double HiggsChiral::GammaZga ( ) const
virtual

The decay width \((H\to Z\gamma)\) in the current model.

Returns
\(\Gamma(H\to Z\gamma)\)

Definition at line 513 of file HiggsChiral.cpp.

514{
515 double Mt=trueSM.getQuarks(QCD::TOP).getMass();
516 double Mb=trueSM.getQuarks(QCD::BOTTOM).getMass();
517 double Mc=trueSM.getQuarks(QCD::CHARM).getMass();
520 double MW=trueSM.Mw_tree();
521 double cW2=trueSM.c02();
522 double sW2=1.0-cW2;
523 double TAUt=4.0*Mt*Mt/(mHl*mHl);
524 double TAUb=4.0*Mb*Mb/(mHl*mHl);
525 double TAUc=4.0*Mc*Mc/(mHl*mHl);
526 double TAUs=4.0*Ms*Ms/(mHl*mHl);
527 double TAUtau=4.0*Mtau*Mtau/(mHl*mHl);
528 double TAUw=4.0*MW*MW/(mHl*mHl);
529 double LAMt=4.0*Mt*Mt/(Mz*Mz);
530 double LAMb=4.0*Mb*Mb/(Mz*Mz);
531 double LAMc=4.0*Mc*Mc/(Mz*Mz);
532 double LAMs=4.0*Ms*Ms/(Mz*Mz);
533 double LAMtau=4.0*Mtau*Mtau/(Mz*Mz);
534 double LAMw=4.0*MW*MW/(Mz*Mz);
535
536 double factor = GF*ale*ale/(sqrt(2.0)*64.0*M_PI*M_PI*M_PI)*pow(mHl*(1.0-Mz*Mz/(mHl*mHl)),3);
537
538 return factor * ((-ct * 4.0*(0.5-4.0/3.0*sW2)*(Int1(TAUt,LAMt)-Int2(TAUt,LAMt)) * (1.0-AlsMz/M_PI)
539 +cb * 2.0*(-0.5+2.0/3.0*sW2)*(Int1(TAUb,LAMb)-Int2(TAUb,LAMb))
540 -cc * 4.0*(0.5-4.0/3.0*sW2)*(Int1(TAUc,LAMc)-Int2(TAUc,LAMc))
541 +cs * 2.0*(-0.5+2.0/3.0*sW2)*(Int1(TAUs,LAMs)-Int2(TAUs,LAMs))
542 +ctau * 2.0*(-0.5+2.0*sW2)*(Int1(TAUtau,LAMtau)-Int2(TAUtau,LAMtau)) )/sqrt(sW2*cW2)
543 -cv * sqrt(cW2/sW2)*(4.0*(3.0-sW2/cW2)*Int2(TAUw,LAMw)
544 +((1.0+2.0/TAUw)*sW2/cW2-(5.0+2.0/TAUw))*Int1(TAUw,LAMw))
545 +cZga).abs2(); /*CHANGE THE cZga COEFFICIENT!*/
546}

◆ GammaZZ()

const double HiggsChiral::GammaZZ ( ) const
virtual

The decay width \((H\to ZZ)\) in the current model.

Returns
\(\Gamma(H\to ZZ)\)

Definition at line 508 of file HiggsChiral.cpp.

509{
511}

◆ getcb()

double HiggsChiral::getcb ( ) const
inline

a getter for the EFT coeff \(c_b\)

Returns
\(c_b\)

Definition at line 168 of file HiggsChiral.h.

169 {
170 return cb;
171 }

◆ getcc()

double HiggsChiral::getcc ( ) const
inline

a getter for the EFT coeff \(c_c\)

Returns
\(c_c\)

Definition at line 177 of file HiggsChiral.h.

178 {
179 return cc;
180 }

◆ getcg()

double HiggsChiral::getcg ( ) const
inline

a getter for the EFT coeff \(c_g\)

Returns
\(c_g\)

Definition at line 214 of file HiggsChiral.h.

215 {
216 return cg;
217 }

◆ getcga()

double HiggsChiral::getcga ( ) const
inline

a getter for the EFT coeff \(c_\gamma\)

Returns
\(c_\gamma\)

Definition at line 223 of file HiggsChiral.h.

224 {
225 return cga;
226 }

◆ getcmu()

double HiggsChiral::getcmu ( ) const
inline

a getter for the EFT coeff \(c_\mu\)

Returns
\(c_\mu\)

Definition at line 205 of file HiggsChiral.h.

206 {
207 return cmu;
208 }

◆ getcs()

double HiggsChiral::getcs ( ) const
inline

a getter for the EFT coeff \(c_s\)

Returns
\(c_s\)

Definition at line 186 of file HiggsChiral.h.

187 {
188 return cs;
189 }

◆ getct()

double HiggsChiral::getct ( ) const
inline

a getter for the EFT coeff \(c_t\)

Returns
\(c_t\)

Definition at line 159 of file HiggsChiral.h.

160 {
161 return ct;
162 }

◆ getctau()

double HiggsChiral::getctau ( ) const
inline

a getter for the EFT coeff \(c_\tau\)

Returns
\(c_\tau\)

Definition at line 196 of file HiggsChiral.h.

197 {
198 return ctau;
199 }

◆ getcv()

double HiggsChiral::getcv ( ) const
inline

a getter for the EFT coeff \(c_V\)

Returns
\(c_V\)

Definition at line 150 of file HiggsChiral.h.

151 {
152 return cv;
153 }

◆ getcZga()

double HiggsChiral::getcZga ( ) const
inline

a getter for the EFT coeff \(c_{Z\gamma}\)

Returns
\(c_{Z\gamma}\)

Definition at line 232 of file HiggsChiral.h.

233 {
234 return cZga;
235 }

◆ getexpZgaLimitATLAS()

double HiggsChiral::getexpZgaLimitATLAS ( ) const
inline

a getter for the experimental value of the expected upper limit in \(pp \to H \to Z\gamma\) from ATLAS

Returns
The \(H \to Z\gamma\) limit from ATLAS

Definition at line 295 of file HiggsChiral.h.

296 {
297 return expZgaLimitATLAS;
298 }

◆ getexpZgaLimitATLAS13()

double HiggsChiral::getexpZgaLimitATLAS13 ( ) const
inline

a getter for the experimental value of the expected upper limit in \(pp \to H \to Z\gamma\) from ATLAS at 13 TeV

Returns
The \(H \to Z\gamma\) limit from ATLAS at 13 TeV

Definition at line 277 of file HiggsChiral.h.

278 {
279 return expZgaLimitATLAS13;
280 }

◆ getexpZgaLimitCMS()

double HiggsChiral::getexpZgaLimitCMS ( ) const
inline

a getter for the experimental value of the expected upper limit in \(pp \to H \to Z\gamma\) from CMS

Returns
The \(H \to Z\gamma\) limit from CMS

Definition at line 304 of file HiggsChiral.h.

305 {
306 return expZgaLimitCMS;
307 }

◆ getexpZgaLimitCMS13()

double HiggsChiral::getexpZgaLimitCMS13 ( ) const
inline

a getter for the experimental value of the expected upper limit in \(pp \to H \to Z\gamma\) from CMS at 13 TeV

Returns
The \(H \to Z\gamma\) limit from CMS at 13 TeV

Definition at line 286 of file HiggsChiral.h.

287 {
288 return expZgaLimitCMS13;
289 }

◆ getobsZgaLimitATLAS()

double HiggsChiral::getobsZgaLimitATLAS ( ) const
inline

a getter for the value of the observed upper limit in \(pp \to H \to Z\gamma\) from ATLAS

Returns
The \(H \to Z\gamma\) limit from ATLAS

Definition at line 259 of file HiggsChiral.h.

260 {
261 return obsZgaLimitATLAS;
262 }

◆ getobsZgaLimitATLAS13()

double HiggsChiral::getobsZgaLimitATLAS13 ( ) const
inline

a getter for the value of the observed upper limit in \(pp \to H \to Z\gamma\) from ATLAS at 13 TeV

Returns
The \(H \to Z\gamma\) limit from ATLAS at 13 TeV

Definition at line 241 of file HiggsChiral.h.

242 {
243 return obsZgaLimitATLAS13;
244 }

◆ getobsZgaLimitCMS()

double HiggsChiral::getobsZgaLimitCMS ( ) const
inline

a getter for the value of the observed upper limit in \(pp \to H \to Z\gamma\) from CMS

Returns
The \(H \to Z\gamma\) limit from CMS

Definition at line 268 of file HiggsChiral.h.

269 {
270 return obsZgaLimitCMS;
271 }

◆ getobsZgaLimitCMS13()

double HiggsChiral::getobsZgaLimitCMS13 ( ) const
inline

a getter for the value of the observed upper limit in \(pp \to H \to Z\gamma\) from CMS at 13 TeV

Returns
The \(H \to Z\gamma\) limit from CMS at 13 TeV

Definition at line 250 of file HiggsChiral.h.

251 {
252 return obsZgaLimitCMS13;
253 }

◆ Int1()

gslpp::complex HiggsChiral::Int1 ( const double  tau,
const double  lambda 
) const
private

Definition at line 1912 of file HiggsChiral.cpp.

1912 {
1913 return tau*lambda/(tau-lambda)/2.0+tau*tau*lambda*lambda/((tau-lambda)
1914 *(tau-lambda))/2.0*(f_func(tau)-f_func(lambda))+tau*tau*lambda/((tau-lambda)
1915 *(tau-lambda))*(g_func(tau)-g_func(lambda));
1916}
gslpp::complex g_func(const double x) const
double lambda
The CKM parameter in the Wolfenstein parameterization.

◆ Int2()

gslpp::complex HiggsChiral::Int2 ( const double  tau,
const double  lambda 
) const
private

Definition at line 1918 of file HiggsChiral.cpp.

1918 {
1919 return -tau*lambda/(tau-lambda)/2.0*(f_func(tau)-f_func(lambda));
1920}

◆ kappaAeff()

const double HiggsChiral::kappaAeff ( ) const
virtual

The effective coupling \(\kappa_{A,eff}=\sqrt{\Gamma_{HAA}/\Gamma_{HAA}^{SM}}\).

Returns
\(\kappa_{A,eff}\)

Reimplemented from NPbase.

Definition at line 1878 of file HiggsChiral.cpp.

1879{
1880 return computecgaga();
1881}

◆ kappabeff()

const double HiggsChiral::kappabeff ( ) const
virtual

The effective coupling \(\kappa_{b,eff}=\sqrt{\Gamma_{Hbb}/\Gamma_{Hbb}^{SM}}\).

Returns
\(\kappa_{b,eff}\)

Reimplemented from NPbase.

Definition at line 1858 of file HiggsChiral.cpp.

1859{
1860 return computecb();
1861}

◆ kappaceff()

const double HiggsChiral::kappaceff ( ) const
virtual

The effective coupling \(\kappa_{c,eff}=\sqrt{\Gamma_{Hcc}/\Gamma_{Hcc}^{SM}}\).

Returns
\(\kappa_{c,eff}\)

Reimplemented from NPbase.

Definition at line 1848 of file HiggsChiral.cpp.

1849{
1850 return computecc();
1851}

◆ kappaGeff()

const double HiggsChiral::kappaGeff ( ) const
virtual

The effective coupling \(\kappa_{G,eff}=\sqrt{\Gamma_{HGG}/\Gamma_{HGG}^{SM}}\).

Returns
\(\kappa_{G,eff}\)

Reimplemented from NPbase.

Definition at line 1863 of file HiggsChiral.cpp.

1864{
1865 return computecg();
1866}

◆ kappamueff()

const double HiggsChiral::kappamueff ( ) const
virtual

The effective coupling \(\kappa_{\mu,eff}=\sqrt{\Gamma_{H\mu\mu}/\Gamma_{H\mu\mu}^{SM}}\).

Returns
\(\kappa_{\mu,eff}\)

Reimplemented from NPbase.

Definition at line 1838 of file HiggsChiral.cpp.

1839{
1840 return computecmu();
1841}

◆ kappaseff()

const double HiggsChiral::kappaseff ( ) const
virtual

The effective coupling \(\kappa_{s,eff}=\sqrt{\Gamma_{Hss}/\Gamma_{Hss}^{SM}}\).

Returns
\(\kappa_{s,eff}\)

Definition at line 1853 of file HiggsChiral.cpp.

1854{
1855 return computecs();
1856}

◆ kappataueff()

const double HiggsChiral::kappataueff ( ) const
virtual

The effective coupling \(\kappa_{\tau,eff}=\sqrt{\Gamma_{H\tau\tau}/\Gamma_{H\tau\tau}^{SM}}\).

Returns
\(\kappa_{\tau,eff}\)

Reimplemented from NPbase.

Definition at line 1843 of file HiggsChiral.cpp.

1844{
1845 return computectau();
1846}

◆ kappaWeff()

const double HiggsChiral::kappaWeff ( ) const
virtual

The effective coupling \(\kappa_{W,eff}=\sqrt{\Gamma_{HWW}/\Gamma_{HWW}^{SM}}\).

Returns
\(\kappa_{W,eff}\)

Reimplemented from NPbase.

Definition at line 1873 of file HiggsChiral.cpp.

1874{
1875 return computecV();
1876}

◆ kappaZAeff()

const double HiggsChiral::kappaZAeff ( ) const
virtual

The effective coupling \(\kappa_{ZA,eff}=\sqrt{\Gamma_{HZA}/\Gamma_{HZA}^{SM}}\).

Returns
\(\kappa_{ZA,eff}\)

Reimplemented from NPbase.

Definition at line 1883 of file HiggsChiral.cpp.

1884{
1885 return computecZga();
1886}

◆ kappaZeff()

const double HiggsChiral::kappaZeff ( ) const
virtual

The effective coupling \(\kappa_{Z,eff}=\sqrt{\Gamma_{HZZ}/\Gamma_{HZZ}^{SM}}\).

Returns
\(\kappa_{Z,eff}\)

Reimplemented from NPbase.

Definition at line 1868 of file HiggsChiral.cpp.

1869{
1870 return computecV();
1871}

◆ mueeHvv()

const double HiggsChiral::mueeHvv ( const double  sqrt_s,
const double  Pol_em,
const double  Pol_ep 
) const
virtual

The ratio \(\mu_{e^+e^- \to H\nu\bar{\nu}}\) between the \( e^+e^- \to H\nu\bar{\nu} \) associated production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
[in]Pol_empolarization of electrons
[in]

polarization of positrons

Returns
\(\mu_{e^+e^- \to H\nu\bar{\nu}}\)

Reimplemented from NPbase.

Definition at line 206 of file HiggsChiral.cpp.

207{
208 return computecV() * computecV();
209}

◆ mueettH()

const double HiggsChiral::mueettH ( const double  sqrt_s,
const double  Pol_em,
const double  Pol_ep 
) const
virtual

The ratio \(\mu_{eettH}\) between the \( e^{+}e^{-}\to t\bar{t} H \) production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
[in]Pol_empolarization of electrons
[in]

polarization of positrons

Returns
\(\mu_{eettH}\)

Reimplemented from NPbase.

Definition at line 279 of file HiggsChiral.cpp.

280{
281 return computect() * computect();
282}

◆ mueeWBF()

const double HiggsChiral::mueeWBF ( const double  sqrt_s,
const double  Pol_em,
const double  Pol_ep 
) const
virtual

The ratio \(\mu_{eeWBF}\) between the \( e^{+}e^{-}\to \nu\bar{\nu} H \) production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
[in]Pol_empolarization of electrons
[in]

polarization of positrons

Returns
\(\mu_{eeWBF}\)

Reimplemented from NPbase.

Definition at line 201 of file HiggsChiral.cpp.

202{
203 return computecV() * computecV();
204}

◆ mueeZBF()

const double HiggsChiral::mueeZBF ( const double  sqrt_s,
const double  Pol_em,
const double  Pol_ep 
) const
virtual

The ratio \(\mu_{eeZBF}\) between the \( e^{+}e^{-}\to e^{+}e^{-} H \) production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
[in]Pol_empolarization of electrons
[in]

polarization of positrons

Returns
\(\mu_{eeZBF}\)

Reimplemented from NPbase.

Definition at line 211 of file HiggsChiral.cpp.

212{
213 return computecV() * computecV();
214}

◆ mueeZH()

const double HiggsChiral::mueeZH ( const double  sqrt_s,
const double  Pol_em,
const double  Pol_ep 
) const
virtual

The ratio \(\mu_{eeZH}\) between the \(e^{+}e^{-}\to ZH\) associated production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV, Pol_em and Pol_ep are the polarization of electrons and positrons, respectively
Returns
\(\mu_{eeZH}\)

Reimplemented from NPbase.

Definition at line 226 of file HiggsChiral.cpp.

227{
228 return computecV() * computecV();
229}

◆ mueeZllH()

const double HiggsChiral::mueeZllH ( const double  sqrt_s,
const double  Pol_em,
const double  Pol_ep 
) const
virtual

The ratio \(\mu_{eeZH, Z \to e^+ e^-, \mu^+ \mu^-}\) between the \( e^{+}e^{-}\to ZH, Z \to e^+ e^-, \mu^+ \mu^- \) associated production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
[in]Pol_empolarization of electrons
[in]

polarization of positrons

Returns
\(\mu_{eeZH, Z \to e^+ e^-, \mu^+ \mu^-}\)

Reimplemented from NPbase.

Definition at line 231 of file HiggsChiral.cpp.

232{
233 return computecV() * computecV();
234}

◆ mueeZqqH()

const double HiggsChiral::mueeZqqH ( const double  sqrt_s,
const double  Pol_em,
const double  Pol_ep 
) const
virtual

The ratio \(\mu_{eeZH, Z \to q \bar{q}}\) between the \( e^{+}e^{-}\to ZH, Z \to q \bar{q} \) associated production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
[in]Pol_empolarization of electrons
[in]

polarization of positrons

Returns
\(\mu_{eeZH, Z \to q \bar{q}}\)

Reimplemented from NPbase.

Definition at line 236 of file HiggsChiral.cpp.

237{
238 return computecV() * computecV();
239}

◆ muggH()

const double HiggsChiral::muggH ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH}\) between the gluon-gluon fusion Higgs production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH}\)

Reimplemented from NPbase.

Definition at line 184 of file HiggsChiral.cpp.

185{
186// return Gammagg() / (trueSM.computeBrHtogg()*trueSM.computeGammaHTotal());
187
188 return computecg() * computecg();
189}

◆ muggHbb()

const double HiggsChiral::muggHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,bb}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,bb}\)

Reimplemented from NPbase.

Definition at line 1201 of file HiggsChiral.cpp.

1202{
1204}

◆ muggHgaga()

const double HiggsChiral::muggHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,\gamma\gamma}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 909 of file HiggsChiral.cpp.

910{
912}

◆ muggHgagaInt()

const double HiggsChiral::muggHgagaInt ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,\gamma\gamma}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model. Includes interference effects with the background, following arXiv:1704.08259.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 914 of file HiggsChiral.cpp.

915{
916 double muNWA, GammaRatio, fki;
917 double kt,kb,kc,ks,ku,kd,kta,km,ke;
918 double kw;
919 double kg,kgamma;
920
921 muNWA = muggH(sqrt_s)*BrHgagaRatio();
922
923 kt = computect();
924 kb = computecb();
925 kc = computecc();
926 ks = 1.0;
927 ku = 1.0;
928 kd = 1.0;
929 kta = computectau();
930 km = computecmu();
931 ke = 1.0;
932
933 kw = computecV();
934
935 kg = (3.0/2.0) * computecg();
936 kgamma = (3.0/2.0) * computecgaga();
937
938 GammaRatio = computeGammaTotalRatio();
939
940 fki = 0.000802422 *kb*kb + 0.000312884 *kb*kc + 0.0000182107 *kc*kc +
941 5.94769e-9 *kb*kd + 9.62554e-10 *kc*kd + 6.2785e-15 *kd*kd +
942 5.53251e-10 *kb*ke + 3.51863e-11 *kc*ke + 1.09243e-15 *kd*ke -
943 0.00905016 *kb*kg - 0.00190706 *kc*kg - 5.97591e-9 *kd*kg -
944 6.72288e-10 *ke*kg - 0.0271505 *kb*kgamma - 0.00143029 *kc*kgamma -
945 1.79277e-8 *kd*kgamma - 0.174392 *kg*kgamma + 8.97565e-6 *kb*km +
946 6.21013e-7 *kc*km + 2.37616e-11 *kd*km - 0.0000460022 *kg*km +
947 4.93348e-6 *kb*ks + 8.51176e-7 *kc*ks + 1.29558e-11 *kd*ks +
948 1.16267e-12 *ke*ks - 0.0000123381 *kg*ks - 0.0000370143 *kgamma*ks +
949 2.22544e-8 *km*ks + 6.08665e-9 *ks*ks - 0.0467672 *kb*kt -
950 0.00394193 *kc*kt - 3.08808e-8 *kd*kt - 6.94817e-10 *ke*kt -
951 0.240315 *kg*kt - 0.180236 *kgamma*kt - 0.0000475437 *km*kt -
952 0.0000637578 *ks*kt - 0.248368 *kt*kt + 0.00100168 *kb*kta +
953 0.0000759092 *kc*kta + 3.44671e-9 *kd*kta - 0.00975386 *kg*kta +
954 2.93009e-6 *ks*kta - 0.0100807 *kt*kta + 5.30126e-8 *kb*ku +
955 5.54256e-9 *kc*ku + 1.15815e-13 *kd*ku + 4.05206e-15 *ke*ku -
956 1.03323e-7 *kg*ku - 7.74926e-8 *kgamma*ku +
957 8.62762e-11 *km*ku + 1.17664e-10 *ks*ku - 2.13572e-7 *kt*ku +
958 1.2332e-8 *kta*ku + 3.40922e-13 *ku*ku + 0.169912 *kb*kw +
959 0.00895098 *kc*kw + 1.12194e-7 *kd*kw + 1.09137 *kg*kw +
960 0.000231641 *ks*kw + 1.12795 *kt*kw + 4.8496e-7 *ku*kw;
961
962 return (muNWA - 0.022 *GammaRatio * fki)/0.978;
963
964}
virtual const double muggH(const double sqrt_s) const
The ratio between the gluon-gluon fusion Higgs production cross-section in the current model and in ...
virtual const double BrHgagaRatio() const
The ratio of the Br in the current model and in the Standard Model.

◆ muggHmumu()

const double HiggsChiral::muggHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,\mu\mu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1141 of file HiggsChiral.cpp.

1142{
1144}

◆ muggHpttH()

const double HiggsChiral::muggHpttH ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH+ttH}\) between the sum of gluon-gluon fusion and t-tbar-Higgs associated production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH+ttH}\)

Reimplemented from NPbase.

Definition at line 268 of file HiggsChiral.cpp.

269{
270 double sigmaggH_SM = trueSM.computeSigmaggH(sqrt_s);
271 double sigmattH_SM = trueSM.computeSigmattH(sqrt_s);
272
273 double sigmaggH = muggH(sqrt_s) * sigmaggH_SM;
274 double sigmattH = muttH(sqrt_s) * sigmattH_SM;
275
276 return (sigmaggH + sigmattH) / (sigmaggH_SM + sigmattH_SM);
277}
virtual const double muttH(const double sqrt_s) const
The ratio between the t-tbar-Higgs associated production cross-section in the current model and in t...
const double computeSigmattH(const double sqrt_s) const
The ttH production cross section in the Standard Model.
const double computeSigmaggH(const double sqrt_s) const
The ggH cross section in the Standard Model.

◆ muggHtautau()

const double HiggsChiral::muggHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,\tau\tau}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1171 of file HiggsChiral.cpp.

1172{
1174}

◆ muggHWW()

const double HiggsChiral::muggHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,WW}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,WW}\)

Reimplemented from NPbase.

Definition at line 1081 of file HiggsChiral.cpp.

1082{
1084}

◆ muggHWW2l2v()

const double HiggsChiral::muggHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,WW\to 2l2\nu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1111 of file HiggsChiral.cpp.

1112{
1114}

◆ muggHZga()

const double HiggsChiral::muggHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,Z\gamma}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 991 of file HiggsChiral.cpp.

992{
994}

◆ muggHZZ()

const double HiggsChiral::muggHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,ZZ}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,ZZ}\)

Reimplemented from NPbase.

Definition at line 1021 of file HiggsChiral.cpp.

1022{
1024}

◆ muggHZZ4l()

const double HiggsChiral::muggHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,ZZ\to 4l}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1051 of file HiggsChiral.cpp.

1052{
1054}

◆ mummH()

const double HiggsChiral::mummH ( const double  sqrt_s) const
virtual

The ratio \(\mu_{\mu\mu H}\) between the \(\sigma(\mu \mu \to H)}\) production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{\mu\mu H}\)

Reimplemented from NPbase.

Definition at line 285 of file HiggsChiral.cpp.

286{
287 double mu = 1.0;
288// mu = (computecmu() * computecmu());
289
290 if (sqrt_s == 0.125) {
291
292// Peak production cross section mu mu -> H -> X = 4 pi/mH^2 * BR(H->mu mu) * BR(H-> X)
293// Use mu mu -> H = 4 pi/mH^2 * BR(H->mu mu), so the xs BR formulae still applies
294 mu = BrHmumuRatio();
295
296 } else
297 throw std::runtime_error("Bad argument in HiggsChiral::mummH()");
298
299 return mu;
300}
virtual const double BrHmumuRatio() const
The ratio of the Br in the current model and in the Standard Model.

◆ mummHmm()

const double HiggsChiral::mummHmm ( const double  sqrt_s) const
virtual

The ratio \(\mu_{\mu\mu H\mu\mu}\) between the \(\sigma(\mu \mu \to H \mu \mu)}\) production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{\mu\mu H\mu\mu}\)

Reimplemented from NPbase.

Definition at line 329 of file HiggsChiral.cpp.

330{
331 double mu = 1.0;
332 mu = (computecV() * computecV());
333 return mu;
334}

◆ mummHNWA()

const double HiggsChiral::mummHNWA ( const double  sqrt_s) const
virtual

The ratio \(\mu_{\mu\mu H}\) between the \(\sigma(\mu \mu \to H)}\) production cross-section in the current model and in the Standard Model, in the narrow width approximation.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{\mu\mu H}\)

Reimplemented from NPbase.

Definition at line 302 of file HiggsChiral.cpp.

303{
304 double mu = 1.0;
305 mu = (computecmu() * computecmu());
306
307 return mu;
308}

◆ mummHvv()

const double HiggsChiral::mummHvv ( const double  sqrt_s) const
virtual

The ratio \(\mu_{\mu\mu H\nu\nu}\) between the \(\sigma(\mu \mu \to H \nu \nu)}\) production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{\mu\mu H\nu\nu}\)

Reimplemented from NPbase.

Definition at line 319 of file HiggsChiral.cpp.

320{
321// In this model we neglect the contributions from HZ->vv with off-shell Z
322// Dependence is exact if Custodial symmetry option is on
323 double mu = 1.0;
324 mu = (computecV() * computecV());
325 return mu;
326}

◆ mummttH()

const double HiggsChiral::mummttH ( const double  sqrt_s) const
virtual

The ratio \(\mu_{\mu\mu ttH}\) between the \(\sigma(\mu \mu \to t\bar{t} H )}\) production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{\mu\mu ttH}\)

Reimplemented from NPbase.

Definition at line 337 of file HiggsChiral.cpp.

338{
339 double mu = 1.0;
340 mu = (computect() * computect());
341 return mu;
342}

◆ mummZH()

const double HiggsChiral::mummZH ( const double  sqrt_s) const
virtual

The ratio \(\mu_{\mu\mu ZH}\) between the \(\sigma(\mu \mu \to Z H)}\) production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{\mu\mu ZH}\)

Reimplemented from NPbase.

Definition at line 311 of file HiggsChiral.cpp.

312{
313 double mu = 1.0;
314 mu = (computecV() * computecV());
315 return mu;
316}

◆ muppHmumu()

const double HiggsChiral::muppHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{pp,bb}\) between the Higgs production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{pp,bb}\)

Reimplemented from NPbase.

Definition at line 1231 of file HiggsChiral.cpp.

1232{
1233 if(sqrt_s==8)
1234 {
1235 return (0.872 * computecg() * computecg() + 0.122 * computecV() * computecV() + 0.006 * computect() * computect()) * computecmu() * computecmu() / computeGammaTotalRatio();
1236 }
1237 if(sqrt_s==13)
1238 {
1239 return (0.871 * computecg() * computecg() + 0.119 * computecV() * computecV() + 0.010 * computect() * computect()) * computecmu() * computecmu() / computeGammaTotalRatio();
1240 }
1241 else
1242 {
1243 throw std::runtime_error("The observable muppHmumu is only defined for 8 or 13 TeV.");
1244 }
1245}

◆ mutHq()

const double HiggsChiral::mutHq ( const double  sqrt_s) const
virtual

The ratio \(\mu_{tHq}\) between the t-q-Higgs associated production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{tHq}\)

Reimplemented from NPbase.

Definition at line 256 of file HiggsChiral.cpp.

257{
258 double mu = 1.0;
259 double Kt = computect();
260 double Kw = computecV();
261
262// From ATLAS parametrization of the K-framework (at 14 TeV?)
263 mu = 2.63 * Kt * Kt + 3.58 * Kw * Kw - 5.21 * Kt * Kw;
264
265 return mu;
266}

◆ muTHUggHbb()

const double HiggsChiral::muTHUggHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,bb}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,bb}\)

Reimplemented from NPbase.

Definition at line 1494 of file HiggsChiral.cpp.

1495{
1496 return muggH(sqrt_s)*BrHbbRatio();
1497}
virtual const double BrHbbRatio() const
The ratio of the Br in the current model and in the Standard Model.

◆ muTHUggHgaga()

const double HiggsChiral::muTHUggHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,\gamma\gamma}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 1254 of file HiggsChiral.cpp.

1255{
1256 return muggH(sqrt_s)*BrHgagaRatio();
1257}

◆ muTHUggHmumu()

const double HiggsChiral::muTHUggHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,\mu\mu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1434 of file HiggsChiral.cpp.

1435{
1436 return muggH(sqrt_s)*BrHmumuRatio();
1437}

◆ muTHUggHtautau()

const double HiggsChiral::muTHUggHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,\tau\tau}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1464 of file HiggsChiral.cpp.

1465{
1466 return muggH(sqrt_s)*BrHtautauRatio();
1467}
virtual const double BrHtautauRatio() const
The ratio of the Br in the current model and in the Standard Model.

◆ muTHUggHWW()

const double HiggsChiral::muTHUggHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,WW}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,WW}\)

Reimplemented from NPbase.

Definition at line 1374 of file HiggsChiral.cpp.

1375{
1376 return muggH(sqrt_s)*BrHWWRatio();
1377}

◆ muTHUggHWW2l2v()

const double HiggsChiral::muTHUggHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,WW\to 2l2\nu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1404 of file HiggsChiral.cpp.

1405{
1406 return muggH(sqrt_s)*BrH2l2vRatio();
1407}
virtual const double BrH2l2vRatio() const
The ratio of the Br ( ) in the current model and in the Standard Model.

◆ muTHUggHZga()

const double HiggsChiral::muTHUggHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,Z\gamma}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 1284 of file HiggsChiral.cpp.

1285{
1286 return muggH(sqrt_s)*BrHZgaRatio();
1287}

◆ muTHUggHZgamumu()

const double HiggsChiral::muTHUggHZgamumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,Z\gamma\to \gamma 2\mu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z \gamma\to \gamma 2\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,Z\gamma\to \gamma 2\mu}\)

Reimplemented from NPbase.

Definition at line 1549 of file HiggsChiral.cpp.

1550{
1551 return muggH(sqrt_s)*BrHZgamumuRatio();
1552}
virtual const double BrHZgamumuRatio() const
The ratio of the Br in the current model and in the Standard Model.

◆ muTHUggHZZ()

const double HiggsChiral::muTHUggHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,ZZ}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,ZZ}\)

Reimplemented from NPbase.

Definition at line 1314 of file HiggsChiral.cpp.

1315{
1316 return muggH(sqrt_s)*BrHZZRatio();
1317}

◆ muTHUggHZZ4l()

const double HiggsChiral::muTHUggHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,ZZ\to 4l}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1344 of file HiggsChiral.cpp.

1345{
1346 return muggH(sqrt_s)*BrH4lRatio();
1347}
virtual const double BrH4lRatio() const
The ratio of the Br ( ) in the current model and in the Standard Model.

◆ muTHUggHZZ4mu()

const double HiggsChiral::muTHUggHZZ4mu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ggH,ZZ\to 4\mu}\) between the gluon-gluon fusion Higgs production cross-section with subsequent decay into \(Z Z^*\to 4\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ggH,ZZ\to 4\mu}\)

Reimplemented from NPbase.

Definition at line 1544 of file HiggsChiral.cpp.

1545{
1546 return muggH(sqrt_s)*BrH4muRatio();
1547}
virtual const double BrH4muRatio() const
The ratio of the Br in the current model and in the Standard Model.

◆ muTHUttHbb()

const double HiggsChiral::muTHUttHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,bb}\) between the ttH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,bb}\)

Reimplemented from NPbase.

Definition at line 1519 of file HiggsChiral.cpp.

1520{
1521 return muttH(sqrt_s)*BrHbbRatio();
1522}

◆ muTHUttHgaga()

const double HiggsChiral::muTHUttHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,\gamma\gamma}\) between the ttH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 1279 of file HiggsChiral.cpp.

1280{
1281 return muttH(sqrt_s)*BrHgagaRatio();
1282}

◆ muTHUttHmumu()

const double HiggsChiral::muTHUttHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,\mu\mu}\) between the ttH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1459 of file HiggsChiral.cpp.

1460{
1461 return muttH(sqrt_s)*BrHmumuRatio();
1462}

◆ muTHUttHtautau()

const double HiggsChiral::muTHUttHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,\tau\tau}\) between the ttH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1489 of file HiggsChiral.cpp.

1490{
1491 return muttH(sqrt_s)*BrHtautauRatio();
1492}

◆ muTHUttHWW()

const double HiggsChiral::muTHUttHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,WW}\) between the ttH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,WW}\)

Reimplemented from NPbase.

Definition at line 1399 of file HiggsChiral.cpp.

1400{
1401 return muttH(sqrt_s)*BrHWWRatio();
1402}

◆ muTHUttHWW2l2v()

const double HiggsChiral::muTHUttHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,WW\to 2l2\nu}\) between the ttH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1429 of file HiggsChiral.cpp.

1430{
1431 return muttH(sqrt_s)*BrH2l2vRatio();
1432}

◆ muTHUttHZga()

const double HiggsChiral::muTHUttHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,Z\gamma}\) between the ttH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 1309 of file HiggsChiral.cpp.

1310{
1311 return muttH(sqrt_s)*BrHZgaRatio();
1312}

◆ muTHUttHZZ()

const double HiggsChiral::muTHUttHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,ZZ}\) between the ttH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,ZZ}\)

Reimplemented from NPbase.

Definition at line 1339 of file HiggsChiral.cpp.

1340{
1341 return muttH(sqrt_s)*BrHZZRatio();
1342}

◆ muTHUttHZZ4l()

const double HiggsChiral::muTHUttHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,ZZ\to 4l}\) between the ttH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1369 of file HiggsChiral.cpp.

1370{
1371 return muttH(sqrt_s)*BrH4lRatio();
1372}

◆ muTHUVBFBRinv()

const double HiggsChiral::muTHUVBFBRinv ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF}\) between the VBF production cross-section in the current model and in the Standard Model, multiplied by the total (SM+new physics) invisible decay branching ratio.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF}BR_{inv}\)

Reimplemented from NPbase.

Definition at line 1524 of file HiggsChiral.cpp.

1525{
1526 return muVBF(sqrt_s)*Br_H_inv();
1527}
virtual const double muVBF(const double sqrt_s) const
The ratio between the vector-boson fusion Higgs production cross-section in the current model and in...
virtual const double Br_H_inv() const
The branching ratio of the of the Higgs into invisible particles.
Definition: NPbase.h:2645

◆ muTHUVBFHbb()

const double HiggsChiral::muTHUVBFHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,bb}\) between the VBF Higgs production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,bb}\)

Reimplemented from NPbase.

Definition at line 1499 of file HiggsChiral.cpp.

1500{
1501 return muVBF(sqrt_s)*BrHbbRatio();
1502}

◆ muTHUVBFHgaga()

const double HiggsChiral::muTHUVBFHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,\gamma\gamma}\) between the VBF Higgs production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 1259 of file HiggsChiral.cpp.

1260{
1261 return muVBF(sqrt_s)*BrHgagaRatio();
1262}

◆ muTHUVBFHinv()

const double HiggsChiral::muTHUVBFHinv ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,inv}\) between the VBF production cross-section with subsequent decay into invisible states in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,inv}\)

Reimplemented from NPbase.

Definition at line 1529 of file HiggsChiral.cpp.

1530{
1531 return muVBF(sqrt_s)*BrHtoinvRatio();
1532}
virtual const double BrHtoinvRatio() const
The ratio of the Br in the current model and in the Standard Model.

◆ muTHUVBFHmumu()

const double HiggsChiral::muTHUVBFHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,\mu\mu}\) between the VBF Higgs production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1439 of file HiggsChiral.cpp.

1440{
1441 return muVBF(sqrt_s)*BrHmumuRatio();
1442}

◆ muTHUVBFHtautau()

const double HiggsChiral::muTHUVBFHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,\tau\tau}\) between the VBF Higgs production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1469 of file HiggsChiral.cpp.

1470{
1471 return muVBF(sqrt_s)*BrHtautauRatio();
1472}

◆ muTHUVBFHWW()

const double HiggsChiral::muTHUVBFHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,WW}\) between the VBF Higgs production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,WW}\)

Reimplemented from NPbase.

Definition at line 1379 of file HiggsChiral.cpp.

1380{
1381 return muVBF(sqrt_s)*BrHWWRatio();
1382}

◆ muTHUVBFHWW2l2v()

const double HiggsChiral::muTHUVBFHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,WW\to 2l2\nu}\) between the VBF Higgs production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1409 of file HiggsChiral.cpp.

1410{
1411 return muVBF(sqrt_s)*BrH2l2vRatio();
1412}

◆ muTHUVBFHZga()

const double HiggsChiral::muTHUVBFHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,Z\gamma}\) between the VBF Higgs production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 1289 of file HiggsChiral.cpp.

1290{
1291 return muVBF(sqrt_s)*BrHZgaRatio();
1292}

◆ muTHUVBFHZZ()

const double HiggsChiral::muTHUVBFHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,ZZ}\) between the VBF Higgs production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,ZZ}\)

Reimplemented from NPbase.

Definition at line 1319 of file HiggsChiral.cpp.

1320{
1321 return muVBF(sqrt_s)*BrHZZRatio();
1322}

◆ muTHUVBFHZZ4l()

const double HiggsChiral::muTHUVBFHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,ZZ\to 4l}\) between the VBF Higgs production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1349 of file HiggsChiral.cpp.

1350{
1351 return muVBF(sqrt_s)*BrH4lRatio();
1352}

◆ muTHUVHbb()

const double HiggsChiral::muTHUVHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,bb}\) between the VH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,bb}\)

Reimplemented from NPbase.

Definition at line 1514 of file HiggsChiral.cpp.

1515{
1516 return muVH(sqrt_s)*BrHbbRatio();
1517}
virtual const double muVH(const double sqrt_s) const
The ratio between the WH+ZH associated production cross-section in the current model and in the Stan...

◆ muTHUVHBRinv()

const double HiggsChiral::muTHUVHBRinv ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH}\) between the VH production cross-section in the current model and in the Standard Model, multiplied by the total (SM+new physics) invisible decay branching ratio.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH}BR_{inv}\)

Reimplemented from NPbase.

Definition at line 1534 of file HiggsChiral.cpp.

1535{
1536 return muVH(sqrt_s)*Br_H_inv();
1537}

◆ muTHUVHgaga()

const double HiggsChiral::muTHUVHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,\gamma\gamma}\) between the VH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 1274 of file HiggsChiral.cpp.

1275{
1276 return muVH(sqrt_s)*BrHgagaRatio();
1277}

◆ muTHUVHinv()

const double HiggsChiral::muTHUVHinv ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,inv}\) between the VH production cross-section with subsequent decay into invisible states in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,inv}\)

Reimplemented from NPbase.

Definition at line 1539 of file HiggsChiral.cpp.

1540{
1541 return muVH(sqrt_s)*BrHtoinvRatio();
1542}

◆ muTHUVHmumu()

const double HiggsChiral::muTHUVHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,\mu\mu}\) between the VH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1454 of file HiggsChiral.cpp.

1455{
1456 return muVH(sqrt_s)*BrHmumuRatio();
1457}

◆ muTHUVHtautau()

const double HiggsChiral::muTHUVHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,\tau\tau}\) between the VH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1484 of file HiggsChiral.cpp.

1485{
1486 return muVH(sqrt_s)*BrHtautauRatio();
1487}

◆ muTHUVHWW()

const double HiggsChiral::muTHUVHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,WW}\) between the VH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,WW}\)

Reimplemented from NPbase.

Definition at line 1394 of file HiggsChiral.cpp.

1395{
1396 return muVH(sqrt_s)*BrHWWRatio();
1397}

◆ muTHUVHWW2l2v()

const double HiggsChiral::muTHUVHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,WW\to 2l2\nu}\) between the VH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1424 of file HiggsChiral.cpp.

1425{
1426 return muVH(sqrt_s)*BrH2l2vRatio();
1427}

◆ muTHUVHZga()

const double HiggsChiral::muTHUVHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,Z\gamma}\) between the VH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 1304 of file HiggsChiral.cpp.

1305{
1306 return muVH(sqrt_s)*BrHZgaRatio();
1307}

◆ muTHUVHZZ()

const double HiggsChiral::muTHUVHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,ZZ}\) between the VH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,ZZ}\)

Reimplemented from NPbase.

Definition at line 1334 of file HiggsChiral.cpp.

1335{
1336 return muVH(sqrt_s)*BrHZZRatio();
1337}

◆ muTHUVHZZ4l()

const double HiggsChiral::muTHUVHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,ZZ\to 4l}\) between the VH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1364 of file HiggsChiral.cpp.

1365{
1366 return muVH(sqrt_s)*BrH4lRatio();
1367}

◆ muTHUWHbb()

const double HiggsChiral::muTHUWHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,bb}\) between the WH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,bb}\)

Reimplemented from NPbase.

Definition at line 1509 of file HiggsChiral.cpp.

1510{
1511 return muWH(sqrt_s)*BrHbbRatio();
1512}
virtual const double muWH(const double sqrt_s) const
The ratio between the W-Higgs associated production cross-section in the current model and in the St...

◆ muTHUWHgaga()

const double HiggsChiral::muTHUWHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,\gamma\gamma}\) between the WH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 1269 of file HiggsChiral.cpp.

1270{
1271 return muWH(sqrt_s)*BrHgagaRatio();
1272}

◆ muTHUWHmumu()

const double HiggsChiral::muTHUWHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,\mu\mu}\) between the WH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1449 of file HiggsChiral.cpp.

1450{
1451 return muWH(sqrt_s)*BrHmumuRatio();
1452}

◆ muTHUWHtautau()

const double HiggsChiral::muTHUWHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,\tau\tau}\) between the WH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1479 of file HiggsChiral.cpp.

1480{
1481 return muWH(sqrt_s)*BrHtautauRatio();
1482}

◆ muTHUWHWW()

const double HiggsChiral::muTHUWHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,WW}\) between the WH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,WW}\)

Reimplemented from NPbase.

Definition at line 1389 of file HiggsChiral.cpp.

1390{
1391 return muWH(sqrt_s)*BrHWWRatio();
1392}

◆ muTHUWHWW2l2v()

const double HiggsChiral::muTHUWHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,WW\to 2l2\nu}\) between the WH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1419 of file HiggsChiral.cpp.

1420{
1421 return muWH(sqrt_s)*BrH2l2vRatio();
1422}

◆ muTHUWHZga()

const double HiggsChiral::muTHUWHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,Z\gamma}\) between the WH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 1299 of file HiggsChiral.cpp.

1300{
1301 return muWH(sqrt_s)*BrHZgaRatio();
1302}

◆ muTHUWHZZ()

const double HiggsChiral::muTHUWHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,ZZ}\) between the WH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,ZZ}\)

Reimplemented from NPbase.

Definition at line 1329 of file HiggsChiral.cpp.

1330{
1331 return muWH(sqrt_s)*BrHZZRatio();
1332}

◆ muTHUWHZZ4l()

const double HiggsChiral::muTHUWHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,ZZ\to 4l}\) between the WH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1359 of file HiggsChiral.cpp.

1360{
1361 return muWH(sqrt_s)*BrH4lRatio();
1362}

◆ muTHUZHbb()

const double HiggsChiral::muTHUZHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,bb}\) between the ZH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,bb}\)

Reimplemented from NPbase.

Definition at line 1504 of file HiggsChiral.cpp.

1505{
1506 return muZH(sqrt_s)*BrHbbRatio();
1507}
virtual const double muZH(const double sqrt_s) const
The ratio between the Z-Higgs associated production cross-section in the current model and in the St...

◆ muTHUZHgaga()

const double HiggsChiral::muTHUZHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,\gamma\gamma}\) between the ZH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 1264 of file HiggsChiral.cpp.

1265{
1266 return muZH(sqrt_s)*BrHgagaRatio();
1267}

◆ muTHUZHmumu()

const double HiggsChiral::muTHUZHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,\mu\mu}\) between the ZH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1444 of file HiggsChiral.cpp.

1445{
1446 return muZH(sqrt_s)*BrHmumuRatio();
1447}

◆ muTHUZHtautau()

const double HiggsChiral::muTHUZHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,\tau\tau}\) between the ZH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1474 of file HiggsChiral.cpp.

1475{
1476 return muZH(sqrt_s)*BrHtautauRatio();
1477}

◆ muTHUZHWW()

const double HiggsChiral::muTHUZHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,WW}\) between the ZH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,WW}\)

Reimplemented from NPbase.

Definition at line 1384 of file HiggsChiral.cpp.

1385{
1386 return muZH(sqrt_s)*BrHWWRatio();
1387}

◆ muTHUZHWW2l2v()

const double HiggsChiral::muTHUZHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,WW\to 2l2\nu}\) between the ZH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1414 of file HiggsChiral.cpp.

1415{
1416 return muZH(sqrt_s)*BrH2l2vRatio();
1417}

◆ muTHUZHZga()

const double HiggsChiral::muTHUZHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,Z\gamma}\) between the ZH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 1294 of file HiggsChiral.cpp.

1295{
1296 return muZH(sqrt_s)*BrHZgaRatio();
1297}

◆ muTHUZHZZ()

const double HiggsChiral::muTHUZHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,ZZ}\) between the ZH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,ZZ}\)

Reimplemented from NPbase.

Definition at line 1324 of file HiggsChiral.cpp.

1325{
1326 return muZH(sqrt_s)*BrHZZRatio();
1327}

◆ muTHUZHZZ4l()

const double HiggsChiral::muTHUZHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,ZZ\to 4l}\) between the ZH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1354 of file HiggsChiral.cpp.

1355{
1356 return muZH(sqrt_s)*BrH4lRatio();
1357}

◆ muttH()

const double HiggsChiral::muttH ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH}\) between the t-tbar-Higgs associated production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH}\)

Reimplemented from NPbase.

Definition at line 251 of file HiggsChiral.cpp.

252{
253 return computect() * computect();
254}

◆ muttHbb()

const double HiggsChiral::muttHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,bb}\) between the ttH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,bb}\)

Reimplemented from NPbase.

Definition at line 1226 of file HiggsChiral.cpp.

1227{
1229}

◆ muttHgaga()

const double HiggsChiral::muttHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,\gamma\gamma}\) between the ttH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 986 of file HiggsChiral.cpp.

987{
989}

◆ muttHmumu()

const double HiggsChiral::muttHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,\mu\mu}\) between the ttH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1166 of file HiggsChiral.cpp.

1167{
1169}

◆ muttHtautau()

const double HiggsChiral::muttHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,\tau\tau}\) between the ttH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1196 of file HiggsChiral.cpp.

1197{
1199}

◆ muttHWW()

const double HiggsChiral::muttHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,WW}\) between the ttH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,WW}\)

Reimplemented from NPbase.

Definition at line 1106 of file HiggsChiral.cpp.

1107{
1109}

◆ muttHWW2l2v()

const double HiggsChiral::muttHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,WW\to 2l2\nu}\) between the ttH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1136 of file HiggsChiral.cpp.

1137{
1139}

◆ muttHZga()

const double HiggsChiral::muttHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,Z\gamma}\) between the ttH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 1016 of file HiggsChiral.cpp.

1017{
1019}

◆ muttHZZ()

const double HiggsChiral::muttHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,ZZ}\) between the ttH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,ZZ}\)

Reimplemented from NPbase.

Definition at line 1046 of file HiggsChiral.cpp.

1047{
1049}

◆ muttHZZ4l()

const double HiggsChiral::muttHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ttH,ZZ\to 4l}\) between the ttH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ttH,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1076 of file HiggsChiral.cpp.

1077{
1079}

◆ muVBF()

const double HiggsChiral::muVBF ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF}\) between the vector-boson fusion Higgs production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF}\)

Reimplemented from NPbase.

Definition at line 191 of file HiggsChiral.cpp.

192{
193 return computecV() * computecV();
194}

◆ muVBFgamma()

const double HiggsChiral::muVBFgamma ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF+\gamma}\) between the vector-boson fusion Higgs production cross-section in association with a hard photon in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF+\gamma}\)

Reimplemented from NPbase.

Definition at line 196 of file HiggsChiral.cpp.

197{
198 return computecV() * computecV();
199}

◆ muVBFHbb()

const double HiggsChiral::muVBFHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,bb}\) between the VBF Higgs production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,bb}\)

Reimplemented from NPbase.

Definition at line 1206 of file HiggsChiral.cpp.

1207{
1209}

◆ muVBFHgaga()

const double HiggsChiral::muVBFHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,\gamma\gamma}\) between the VBF Higgs production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 966 of file HiggsChiral.cpp.

967{
969}

◆ muVBFHmumu()

const double HiggsChiral::muVBFHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,\mu\mu}\) between the VBF Higgs production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1146 of file HiggsChiral.cpp.

1147{
1149}

◆ muVBFHtautau()

const double HiggsChiral::muVBFHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,\tau\tau}\) between the VBF Higgs production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1176 of file HiggsChiral.cpp.

1177{
1179}

◆ muVBFHWW()

const double HiggsChiral::muVBFHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,WW}\) between the VBF Higgs production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,WW}\)

Reimplemented from NPbase.

Definition at line 1086 of file HiggsChiral.cpp.

1087{
1089}

◆ muVBFHWW2l2v()

const double HiggsChiral::muVBFHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,WW\to 2l2\nu}\) between the VBF Higgs production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1116 of file HiggsChiral.cpp.

1117{
1119}

◆ muVBFHZga()

const double HiggsChiral::muVBFHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,Z\gamma}\) between the VBF Higgs production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 996 of file HiggsChiral.cpp.

997{
999}

◆ muVBFHZZ()

const double HiggsChiral::muVBFHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,ZZ}\) between the VBF Higgs production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,ZZ}\)

Reimplemented from NPbase.

Definition at line 1026 of file HiggsChiral.cpp.

1027{
1029}

◆ muVBFHZZ4l()

const double HiggsChiral::muVBFHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF,ZZ\to 4l}\) between the VBF Higgs production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1056 of file HiggsChiral.cpp.

1057{
1059}

◆ muVBFpVH()

const double HiggsChiral::muVBFpVH ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VBF+VH}\) between the sum of VBF and WH+ZH associated production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VBF+VH}\)

Reimplemented from NPbase.

Definition at line 246 of file HiggsChiral.cpp.

247{
248 return computecV() * computecV();
249}

◆ muVH()

const double HiggsChiral::muVH ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH}\) between the WH+ZH associated production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH}\)

Reimplemented from NPbase.

Definition at line 241 of file HiggsChiral.cpp.

242{
243 return computecV() * computecV();
244}

◆ muVHbb()

const double HiggsChiral::muVHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,bb}\) between the VH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,bb}\)

Reimplemented from NPbase.

Definition at line 1221 of file HiggsChiral.cpp.

1222{
1224}

◆ muVHgaga()

const double HiggsChiral::muVHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,\gamma\gamma}\) between the VH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 981 of file HiggsChiral.cpp.

982{
984}

◆ muVHmumu()

const double HiggsChiral::muVHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,\mu\mu}\) between the VH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1161 of file HiggsChiral.cpp.

1162{
1164}

◆ muVHpT250()

virtual const double HiggsChiral::muVHpT250 ( const double  sqrt_s) const
inlinevirtual

The ratio \(\mu_{VH}\) between the WH+ZH associated production cross-section in the current model and in the Standard Model, with \(p_{T,H}>250\) GeV.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH}\)

Reimplemented from NPbase.

Definition at line 467 of file HiggsChiral.h.

468 {
469 return muVH(sqrt_s);
470 }

◆ muVHtautau()

const double HiggsChiral::muVHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,\tau\tau}\) between the VH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1191 of file HiggsChiral.cpp.

1192{
1194}

◆ muVHWW()

const double HiggsChiral::muVHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,WW}\) between the VH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,WW}\)

Reimplemented from NPbase.

Definition at line 1101 of file HiggsChiral.cpp.

1102{
1104}

◆ muVHWW2l2v()

const double HiggsChiral::muVHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,WW\to 2l2\nu}\) between the VH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1131 of file HiggsChiral.cpp.

1132{
1134}

◆ muVHZga()

const double HiggsChiral::muVHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,Z\gamma}\) between the VH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 1011 of file HiggsChiral.cpp.

1012{
1014}

◆ muVHZZ()

const double HiggsChiral::muVHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,ZZ}\) between the VH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,ZZ}\)

Reimplemented from NPbase.

Definition at line 1041 of file HiggsChiral.cpp.

1042{
1044}

◆ muVHZZ4l()

const double HiggsChiral::muVHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{VH,ZZ\to 4l}\) between the VH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{VH,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1071 of file HiggsChiral.cpp.

1072{
1074}

◆ muWH()

const double HiggsChiral::muWH ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH}\) between the W-Higgs associated production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH}\)

Reimplemented from NPbase.

Definition at line 216 of file HiggsChiral.cpp.

217{
218 return computecV() * computecV();
219}

◆ muWHbb()

const double HiggsChiral::muWHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,bb}\) between the WH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,bb}\)

Reimplemented from NPbase.

Definition at line 1216 of file HiggsChiral.cpp.

1217{
1219}

◆ muWHgaga()

const double HiggsChiral::muWHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,\gamma\gamma}\) between the WH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 976 of file HiggsChiral.cpp.

977{
979}

◆ muWHmumu()

const double HiggsChiral::muWHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,\mu\mu}\) between the WH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1156 of file HiggsChiral.cpp.

1157{
1159}

◆ muWHpT250()

virtual const double HiggsChiral::muWHpT250 ( const double  sqrt_s) const
inlinevirtual

The ratio \(\mu_{WH}\) between the W-Higgs associated production cross-section in the current model and in the Standard Model, with \(p_{T,H}>250\) GeV.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH}\)

Reimplemented from NPbase.

Definition at line 404 of file HiggsChiral.h.

405 {
406 return muWH(sqrt_s);
407 }

◆ muWHtautau()

const double HiggsChiral::muWHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,\tau\tau}\) between the WH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1186 of file HiggsChiral.cpp.

1187{
1189}

◆ muWHWW()

const double HiggsChiral::muWHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,WW}\) between the WH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,WW}\)

Reimplemented from NPbase.

Definition at line 1096 of file HiggsChiral.cpp.

1097{
1099}

◆ muWHWW2l2v()

const double HiggsChiral::muWHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,WW\to 2l2\nu}\) between the WH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1126 of file HiggsChiral.cpp.

1127{
1129}

◆ muWHZga()

const double HiggsChiral::muWHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,Z\gamma}\) between the WH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 1006 of file HiggsChiral.cpp.

1007{
1009}

◆ muWHZZ()

const double HiggsChiral::muWHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,ZZ}\) between the WH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,ZZ}\)

Reimplemented from NPbase.

Definition at line 1036 of file HiggsChiral.cpp.

1037{
1039}

◆ muWHZZ4l()

const double HiggsChiral::muWHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{WH,ZZ\to 4l}\) between the WH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{WH,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1066 of file HiggsChiral.cpp.

1067{
1069}

◆ muZH()

const double HiggsChiral::muZH ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH}\) between the Z-Higgs associated production cross-section in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH}\)

Reimplemented from NPbase.

Definition at line 221 of file HiggsChiral.cpp.

222{
223 return computecV() * computecV();
224}

◆ muZHbb()

const double HiggsChiral::muZHbb ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,bb}\) between the ZH production cross-section with subsequent decay into \(bb\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,bb}\)

Reimplemented from NPbase.

Definition at line 1211 of file HiggsChiral.cpp.

1212{
1214}

◆ muZHgaga()

const double HiggsChiral::muZHgaga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,\gamma\gamma}\) between the ZH production cross-section with subsequent decay into 2 photons in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,\gamma\gamma}\)

Reimplemented from NPbase.

Definition at line 971 of file HiggsChiral.cpp.

972{
974}

◆ muZHmumu()

const double HiggsChiral::muZHmumu ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,\mu\mu}\) between the ZH production cross-section with subsequent decay into \(\mu\mu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,\mu\mu}\)

Reimplemented from NPbase.

Definition at line 1151 of file HiggsChiral.cpp.

1152{
1154}

◆ muZHpT250()

virtual const double HiggsChiral::muZHpT250 ( const double  sqrt_s) const
inlinevirtual

The ratio \(\mu_{ZH}\) between the Z-Higgs associated production cross-section in the current model and in the Standard Model, with \(p_{T,H}>250\) GeV.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH}\)

Reimplemented from NPbase.

Definition at line 421 of file HiggsChiral.h.

422 {
423 return muZH(sqrt_s);
424 }

◆ muZHtautau()

const double HiggsChiral::muZHtautau ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,\tau\tau}\) between the ZH production cross-section with subsequent decay into \(\tau\tau\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,\tau\tau}\)

Reimplemented from NPbase.

Definition at line 1181 of file HiggsChiral.cpp.

1182{
1184}

◆ muZHWW()

const double HiggsChiral::muZHWW ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,WW}\) between the ZH production cross-section with subsequent decay into \(W W^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,WW}\)

Reimplemented from NPbase.

Definition at line 1091 of file HiggsChiral.cpp.

1092{
1094}

◆ muZHWW2l2v()

const double HiggsChiral::muZHWW2l2v ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,WW\to 2l2\nu}\) between the ZH production cross-section with subsequent decay into \(W W^*\to 2l2\nu\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,WW\to 2l2\nu}\)

Reimplemented from NPbase.

Definition at line 1121 of file HiggsChiral.cpp.

1122{
1124}

◆ muZHZga()

const double HiggsChiral::muZHZga ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,Z\gamma}\) between the ZH production cross-section with subsequent decay into \(Z \gamma\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,Z\gamma}\)

Reimplemented from NPbase.

Definition at line 1001 of file HiggsChiral.cpp.

1002{
1004}

◆ muZHZZ()

const double HiggsChiral::muZHZZ ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,ZZ}\) between the ZH production cross-section with subsequent decay into \(Z Z^*\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,ZZ}\)

Reimplemented from NPbase.

Definition at line 1031 of file HiggsChiral.cpp.

1032{
1034}

◆ muZHZZ4l()

const double HiggsChiral::muZHZZ4l ( const double  sqrt_s) const
virtual

The ratio \(\mu_{ZH,ZZ\to 4l}\) between the ZH production cross-section with subsequent decay into \(Z Z^*\to 4l\) in the current model and in the Standard Model.

Parameters
[in]sqrt_sthe center-of-mass energy in TeV
Returns
\(\mu_{ZH,ZZ\to 4l}\)

Reimplemented from NPbase.

Definition at line 1061 of file HiggsChiral.cpp.

1062{
1064}

◆ obliqueS()

const double HiggsChiral::obliqueS ( ) const
virtual

The oblique parameter \(S\).

Returns
\(S\)

Reimplemented from NPbase.

Definition at line 154 of file HiggsChiral.cpp.

155{
156 double Lambda;
157 if (fabs(1.0 - cv * cv) < pow(10.0, -32.0))
158 Lambda = pow(10.0, 19.0);
159 else
160 Lambda = 4.0 * M_PI * v() / sqrt(fabs(1.0 - cv * cv));
161
162 return ( 1.0 / 12.0 / M_PI * (1.0 - cv * cv) * log(Lambda * Lambda / mHl / mHl));
163}

◆ obliqueT()

const double HiggsChiral::obliqueT ( ) const
virtual

The oblique parameter \(T\).

Returns
\(T\)

Reimplemented from NPbase.

Definition at line 165 of file HiggsChiral.cpp.

166{
167 double Lambda;
168 double cW2_SM = trueSM.cW2();
169 if (fabs(1.0 - cv * cv) < pow(10.0, -32.0))
170 Lambda = pow(10.0, 19.0);
171 else
172 Lambda = 4.0 * M_PI * v() / sqrt(fabs(1.0 - cv * cv));
173
174 return ( -3.0 / 16.0 / M_PI / cW2_SM * (1.0 - cv * cv) * log(Lambda * Lambda / mHl / mHl));
175}
virtual const double cW2(const double Mw_i) const
The square of the cosine of the weak mixing angle in the on-shell scheme, denoted as .

◆ obliqueU()

const double HiggsChiral::obliqueU ( ) const
virtual

The oblique parameter \(U\).

Returns
\(U=0\)

Reimplemented from NPbase.

Definition at line 177 of file HiggsChiral.cpp.

178{
179 return 0.0;
180}

◆ PostUpdate()

bool HiggsChiral::PostUpdate ( )
virtual

The post-update method for HiggsChiral.

This method runs all the procedures that are need to be executed after the model is successfully updated.

Returns
a boolean that is true if the execution is successful

Reimplemented from StandardModel.

Definition at line 45 of file HiggsChiral.cpp.

46{
47 if (!NPbase::PostUpdate()) return (false);
48
49// Check first the flags that control the values of the parameters
50
51 if (FlagUniversalcf) {
52// Assign to all cf the value of ct
53 cb = ct;
54 cc = ct;
55 cs = ct;
56 ctau = ct;
57 cmu = ct;
58 }
59
61// Assign to all cv and cf the value of ct
62 cv = ct;
63 cb = ct;
64 cc = ct;
65 cs = ct;
66 ctau = ct;
67 cmu = ct;
68 }
69
70// Then the add the values of the loops to the cache
71
72 loopComputed = false;
73
77
78 loopComputed = true;
79
80 return (true);
81}
virtual bool PostUpdate()
The post-update method for StandardModel.

◆ setFlag()

bool HiggsChiral::setFlag ( const std::string  name,
const bool  value 
)
virtual

A method to set a flag of HiggsChiral.

Parameters
[in]namename of a model flag
[in]valuethe boolean to be assigned to the flag specified by name
Returns
a boolean that is true if the execution is successful

Reimplemented from NPbase.

Definition at line 137 of file HiggsChiral.cpp.

138{
139 bool res = false;
140 if (name.compare("Universalcf") == 0) {
141 FlagUniversalcf = value;
142 res = true;
143 } else if (name.compare("Universalcvcf") == 0) {
144 FlagUniversalcvcf = value;
145 res = true;
146 } else
147 res = NPbase::setFlag(name, value);
148
149 return (res);
150}
std::string name
The name of the model.
Definition: Model.h:285
virtual bool setFlag(const std::string name, const bool value)
A method to set a flag of NPbase.
Definition: NPbase.h:97

◆ setParameter()

void HiggsChiral::setParameter ( const std::string  name,
const double &  value 
)
protectedvirtual

A method to set the value of a parameter of HiggsChiral.

Parameters
[in]namename of a model parameter
[in]valuethe value to be assigned to the parameter specified by name

Reimplemented from StandardModel.

Definition at line 83 of file HiggsChiral.cpp.

84{
85 if (name.compare("cv") == 0)
86 cv = value;
87 else if (name.compare("ct") == 0)
88 ct = value;
89 else if (name.compare("cb") == 0)
90 cb = value;
91 else if (name.compare("cc") == 0)
92 cc = value;
93 else if (name.compare("cs") == 0)
94 cs = value;
95 else if (name.compare("ctau") == 0)
96 ctau = value;
97 else if (name.compare("cmu") == 0)
98 cmu = value;
99 else if (name.compare("cg") == 0)
100 cg = value;
101 else if (name.compare("cga") == 0)
102 cga = value;
103 else if (name.compare("cZga") == 0)
104 cZga = value;
105 else if (name.compare("obsZgaLimitATLAS13") == 0)
106 obsZgaLimitATLAS13 = value;
107 else if (name.compare("obsZgaLimitCMS13") == 0)
108 obsZgaLimitCMS13 = value;
109 else if (name.compare("obsZgaLimitATLAS") == 0)
110 obsZgaLimitATLAS = value;
111 else if (name.compare("obsZgaLimitCMS") == 0)
112 obsZgaLimitCMS = value;
113 else if (name.compare("expZgaLimitATLAS13") == 0)
114 expZgaLimitATLAS13 = value;
115 else if (name.compare("expZgaLimitCMS13") == 0)
116 expZgaLimitCMS13 = value;
117 else if (name.compare("expZgaLimitATLAS") == 0)
118 expZgaLimitATLAS = value;
119 else if (name.compare("expZgaLimitCMS") == 0)
120 expZgaLimitCMS = value;
121 else
123}
virtual void setParameter(const std::string name, const double &value)
A method to set the value of a parameter of StandardModel.

◆ UpperLimitZgammaA()

const double HiggsChiral::UpperLimitZgammaA ( const double  sqrt_s) const
virtual

Observable implementing the contribution to the likelihood from the upper limit in \(pp \to H \to Z\gamma\) from ATLAS.

Returns
Observable for the upper limit in \(pp \to H \to Z\gamma\)

Reimplemented from NPbase.

Definition at line 393 of file HiggsChiral.cpp.

394{
395 double sigmaggH_SM = trueSM.computeSigmaggH(sqrt_s);
396 double sigmattH_SM = trueSM.computeSigmattH(sqrt_s);
397 double sigmaWH_SM = trueSM.computeSigmaWH(sqrt_s);
398 double sigmaZH_SM = trueSM.computeSigmaZH(sqrt_s);
399 double sigmaWF_SM = trueSM.computeSigmaWF(sqrt_s);
400 double sigmaZF_SM = trueSM.computeSigmaZF(sqrt_s);
401 double sigmaZWF_SM = trueSM.computeSigmaZWF(sqrt_s);
402 double sigmaVBF_SM = sigmaWF_SM + sigmaZF_SM + sigmaZWF_SM;
403
404 double sigmaggH = muggH(sqrt_s) * sigmaggH_SM;
405 double sigmattH = muttH(sqrt_s) * sigmattH_SM;
406 double sigmaWH = muWH(sqrt_s) * sigmaWH_SM;
407 double sigmaZH = muZH(sqrt_s) * sigmaZH_SM;
408 double sigmaVBF = muVBF(sqrt_s) * sigmaVBF_SM;
409
410 double muppH=((sigmaggH + sigmattH + sigmaWH + sigmaZH + sigmaVBF) / (sigmaggH_SM + sigmattH_SM + sigmaWH_SM + sigmaZH_SM + sigmaVBF_SM));
411// double BrHZgaRatio=;
412 double nftos=1.95996398454;
413
414 return (1.0+(muppH*BrHZgaRatio()-getobsZgaLimitATLAS())/getexpZgaLimitATLAS() ) * nftos;
415}
double getexpZgaLimitATLAS() const
a getter for the experimental value of the expected upper limit in from ATLAS
Definition: HiggsChiral.h:295
double getobsZgaLimitATLAS() const
a getter for the value of the observed upper limit in from ATLAS
Definition: HiggsChiral.h:259
const double computeSigmaZWF(const double sqrt_s) const
The Z W interference fusion contribution to higgs-production cross section in the Standard Model.
const double computeSigmaWH(const double sqrt_s) const
The WH production cross section in the Standard Model.
const double computeSigmaZH(const double sqrt_s) const
The ZH production cross section in the Standard Model.
const double computeSigmaWF(const double sqrt_s) const
The W fusion contribution to higgs-production cross section in the Standard Model.
const double computeSigmaZF(const double sqrt_s) const
The Z fusion contribution to higgs-production cross section in the Standard Model.

◆ UpperLimitZgammaA13()

const double HiggsChiral::UpperLimitZgammaA13 ( const double  sqrt_s) const
virtual

Observable implementing the contribution to the likelihood from the upper limit in \(pp \to H \to Z\gamma\) from ATLAS at 13 TeV.

Returns
Observable for the upper limit in \(pp \to H \to Z\gamma\)

Reimplemented from NPbase.

Definition at line 345 of file HiggsChiral.cpp.

346{
347 double sigmaggH_SM = trueSM.computeSigmaggH(sqrt_s);
348 double sigmattH_SM = trueSM.computeSigmattH(sqrt_s);
349 double sigmaWH_SM = trueSM.computeSigmaWH(sqrt_s);
350 double sigmaZH_SM = trueSM.computeSigmaZH(sqrt_s);
351 double sigmaWF_SM = trueSM.computeSigmaWF(sqrt_s);
352 double sigmaZF_SM = trueSM.computeSigmaZF(sqrt_s);
353 double sigmaZWF_SM = trueSM.computeSigmaZWF(sqrt_s);
354 double sigmaVBF_SM = sigmaWF_SM + sigmaZF_SM + sigmaZWF_SM;
355
356 double sigmaggH = muggH(sqrt_s) * sigmaggH_SM;
357 double sigmattH = muttH(sqrt_s) * sigmattH_SM;
358 double sigmaWH = muWH(sqrt_s) * sigmaWH_SM;
359 double sigmaZH = muZH(sqrt_s) * sigmaZH_SM;
360 double sigmaVBF = muVBF(sqrt_s) * sigmaVBF_SM;
361
362 double muppH=((sigmaggH + sigmattH + sigmaWH + sigmaZH + sigmaVBF) / (sigmaggH_SM + sigmattH_SM + sigmaWH_SM + sigmaZH_SM + sigmaVBF_SM));
363// double BrHZgaRatio=;
364 double nftos=1.95996398454;
365
366 return (1.0+(muppH*BrHZgaRatio()-getobsZgaLimitATLAS13())/getexpZgaLimitATLAS13() ) * nftos;
367}
double getobsZgaLimitATLAS13() const
a getter for the value of the observed upper limit in from ATLAS at 13 TeV
Definition: HiggsChiral.h:241
double getexpZgaLimitATLAS13() const
a getter for the experimental value of the expected upper limit in from ATLAS at 13 TeV
Definition: HiggsChiral.h:277

◆ UpperLimitZgammaC()

const double HiggsChiral::UpperLimitZgammaC ( const double  sqrt_s) const
virtual

Observable implementing the contribution to the likelihood from the upper limit in \(pp \to H \to Z\gamma\) from CMS.

Returns
Observable for the upper limit in \(pp \to H \to Z\gamma\)

Reimplemented from NPbase.

Definition at line 417 of file HiggsChiral.cpp.

418{
419 double sigmaggH_SM = trueSM.computeSigmaggH(sqrt_s);
420 double sigmattH_SM = trueSM.computeSigmattH(sqrt_s);
421 double sigmaWH_SM = trueSM.computeSigmaWH(sqrt_s);
422 double sigmaZH_SM = trueSM.computeSigmaZH(sqrt_s);
423 double sigmaWF_SM = trueSM.computeSigmaWF(sqrt_s);
424 double sigmaZF_SM = trueSM.computeSigmaZF(sqrt_s);
425 double sigmaZWF_SM = trueSM.computeSigmaZWF(sqrt_s);
426 double sigmaVBF_SM = sigmaWF_SM + sigmaZF_SM + sigmaZWF_SM;
427
428 double sigmaggH = muggH(sqrt_s) * sigmaggH_SM;
429 double sigmattH = muttH(sqrt_s) * sigmattH_SM;
430 double sigmaWH = muWH(sqrt_s) * sigmaWH_SM;
431 double sigmaZH = muZH(sqrt_s) * sigmaZH_SM;
432 double sigmaVBF = muVBF(sqrt_s) * sigmaVBF_SM;
433
434 double muppH=((sigmaggH + sigmattH + sigmaWH + sigmaZH + sigmaVBF) / (sigmaggH_SM + sigmattH_SM + sigmaWH_SM + sigmaZH_SM + sigmaVBF_SM));
435// double BrHZgaRatio=;
436 double nftos=1.95996398454;
437
438 return (1.0+(muppH*BrHZgaRatio()-getobsZgaLimitCMS())/getexpZgaLimitCMS() ) * nftos;
439}
double getobsZgaLimitCMS() const
a getter for the value of the observed upper limit in from CMS
Definition: HiggsChiral.h:268
double getexpZgaLimitCMS() const
a getter for the experimental value of the expected upper limit in from CMS
Definition: HiggsChiral.h:304

◆ UpperLimitZgammaC13()

const double HiggsChiral::UpperLimitZgammaC13 ( const double  sqrt_s) const
virtual

Observable implementing the contribution to the likelihood from the upper limit in \(pp \to H \to Z\gamma\) from CMS at 13 TeV.

Returns
Observable for the upper limit in \(pp \to H \to Z\gamma\)

Reimplemented from NPbase.

Definition at line 369 of file HiggsChiral.cpp.

370{
371 double sigmaggH_SM = trueSM.computeSigmaggH(sqrt_s);
372 double sigmattH_SM = trueSM.computeSigmattH(sqrt_s);
373 double sigmaWH_SM = trueSM.computeSigmaWH(sqrt_s);
374 double sigmaZH_SM = trueSM.computeSigmaZH(sqrt_s);
375 double sigmaWF_SM = trueSM.computeSigmaWF(sqrt_s);
376 double sigmaZF_SM = trueSM.computeSigmaZF(sqrt_s);
377 double sigmaZWF_SM = trueSM.computeSigmaZWF(sqrt_s);
378 double sigmaVBF_SM = sigmaWF_SM + sigmaZF_SM + sigmaZWF_SM;
379
380 double sigmaggH = muggH(sqrt_s) * sigmaggH_SM;
381 double sigmattH = muttH(sqrt_s) * sigmattH_SM;
382 double sigmaWH = muWH(sqrt_s) * sigmaWH_SM;
383 double sigmaZH = muZH(sqrt_s) * sigmaZH_SM;
384 double sigmaVBF = muVBF(sqrt_s) * sigmaVBF_SM;
385
386 double muppH=((sigmaggH + sigmattH + sigmaWH + sigmaZH + sigmaVBF) / (sigmaggH_SM + sigmattH_SM + sigmaWH_SM + sigmaZH_SM + sigmaVBF_SM));
387// double BrHZgaRatio=;
388 double nftos=1.95996398454;
389
390 return (1.0+(muppH*BrHZgaRatio()-getobsZgaLimitCMS13())/getexpZgaLimitCMS13() ) * nftos;
391}
double getobsZgaLimitCMS13() const
a getter for the value of the observed upper limit in from CMS at 13 TeV
Definition: HiggsChiral.h:250
double getexpZgaLimitCMS13() const
a getter for the experimental value of the expected upper limit in from CMS at 13 TeV
Definition: HiggsChiral.h:286

Member Data Documentation

◆ cb

double HiggsChiral::cb
private

Definition at line 2223 of file HiggsChiral.h.

◆ cc

double HiggsChiral::cc
private

Definition at line 2224 of file HiggsChiral.h.

◆ cg

double HiggsChiral::cg
private

Definition at line 2228 of file HiggsChiral.h.

◆ cg_loop

double HiggsChiral::cg_loop
private

Definition at line 2240 of file HiggsChiral.h.

◆ cga

double HiggsChiral::cga
private

Definition at line 2229 of file HiggsChiral.h.

◆ cga_loop

double HiggsChiral::cga_loop
private

Definition at line 2241 of file HiggsChiral.h.

◆ cmu

double HiggsChiral::cmu
private

Definition at line 2227 of file HiggsChiral.h.

◆ cs

double HiggsChiral::cs
private

Definition at line 2225 of file HiggsChiral.h.

◆ ct

double HiggsChiral::ct
private

Definition at line 2222 of file HiggsChiral.h.

◆ ctau

double HiggsChiral::ctau
private

Definition at line 2226 of file HiggsChiral.h.

◆ cv

double HiggsChiral::cv
private

Definition at line 2221 of file HiggsChiral.h.

◆ cZga

double HiggsChiral::cZga
private

Definition at line 2230 of file HiggsChiral.h.

◆ cZga_loop

double HiggsChiral::cZga_loop
private

Definition at line 2242 of file HiggsChiral.h.

◆ expZgaLimitATLAS

double HiggsChiral::expZgaLimitATLAS
private

Definition at line 2237 of file HiggsChiral.h.

◆ expZgaLimitATLAS13

double HiggsChiral::expZgaLimitATLAS13
private

Definition at line 2235 of file HiggsChiral.h.

◆ expZgaLimitCMS

double HiggsChiral::expZgaLimitCMS
private

Definition at line 2238 of file HiggsChiral.h.

◆ expZgaLimitCMS13

double HiggsChiral::expZgaLimitCMS13
private

Definition at line 2236 of file HiggsChiral.h.

◆ FlagUniversalcf

bool HiggsChiral::FlagUniversalcf
private

A boolean flag that is true if all cf take the same universal value.

Definition at line 2245 of file HiggsChiral.h.

◆ FlagUniversalcvcf

bool HiggsChiral::FlagUniversalcvcf
private

A boolean flag that is true if all cv and cf take the same universal value.

Definition at line 2246 of file HiggsChiral.h.

◆ HChiralvars

const std::string HiggsChiral::HChiralvars
static
Initial value:
= {
"cv", "ct", "cb", "cc", "cs", "ctau", "cmu", "cg", "cga", "cZga", "obsZgaLimitATLAS13", "obsZgaLimitCMS13", "obsZgaLimitATLAS", "obsZgaLimitCMS", "expZgaLimitATLAS13", "expZgaLimitCMS13", "expZgaLimitATLAS", "expZgaLimitCMS"
}

A string array containing the labels of the model parameters in HiggsKvKf.

Definition at line 117 of file HiggsChiral.h.

◆ loopComputed

bool HiggsChiral::loopComputed
private

Definition at line 2243 of file HiggsChiral.h.

◆ NHChiralvars

const int HiggsChiral::NHChiralvars = 18
static

The number of the model parameters.

Definition at line 112 of file HiggsChiral.h.

◆ obsZgaLimitATLAS

double HiggsChiral::obsZgaLimitATLAS
private

Definition at line 2233 of file HiggsChiral.h.

◆ obsZgaLimitATLAS13

double HiggsChiral::obsZgaLimitATLAS13
private

Definition at line 2231 of file HiggsChiral.h.

◆ obsZgaLimitCMS

double HiggsChiral::obsZgaLimitCMS
private

Definition at line 2234 of file HiggsChiral.h.

◆ obsZgaLimitCMS13

double HiggsChiral::obsZgaLimitCMS13
private

Definition at line 2232 of file HiggsChiral.h.


The documentation for this class was generated from the following files: