A model class for new physics in the form of contributions to the \(\delta\,\varepsilon_{1,2,3,b}\) parameters. More...
#include <NPEpsilons_pureNP.h>
Inheritance diagram for NPEpsilons_pureNP:A model class for new physics in the form of contributions to the \(\delta\,\varepsilon_{1,2,3,b}\) parameters.
This is a Model class containing parameters and functions to work with the modified epsilon parameters \(\delta\,\varepsilon_{1,2,3,b}\) which parameterize only new physics contributions to the electroweak precision observables. See [Altarelli:1990zd], [Altarelli:1991fk],[Altarelli:1993sz] for the original epsilon parameterization.
After creating an instance of the current class with the constructor NPEpsilons_pureNP(), it is required to call the initialization method InitializeModel(). In the Monte Carlo run, the constructor as well as the initialization method are called in InputParser::ReadParameters().
The model parameters of NPEpsilons_pureNP are summarized below:
| Label | LaTeX symbol | Description |
|---|---|---|
| delEps_1 | \(\delta\,\varepsilon_1\) | The new physics contribution to \(\varepsilon_1\). |
| delEps_2 | \(\delta\,\varepsilon_2\) | The new physics contribution to \(\varepsilon_2\). |
| delEps_3 | \(\delta\,\varepsilon_3\) | The new physics contribution to \(\varepsilon_3\). |
| delEps_b | \(\delta\,\varepsilon_b\) | The new physics contribution to \(\varepsilon_b\). |
There is no model flag in the current class.
Compared to the base class NPbase, the functions for the following quantities are reimplemented in the current class:
where \(\Gamma_W\) is not available, since it cannot be simply parameterized by the epsilon parameters. In addition, the functions for the epsilon parameters are also provided:
Definition at line 97 of file NPEpsilons_pureNP.h.
Public Member Functions | |
| virtual bool | CheckParameters (const std::map< std::string, double > &DPars) |
| A method to check if all the mandatory parameters for the model have been provided in model initialization. | |
| virtual const double | deltaGA_f (const Particle f) const |
| New physics contribution to the neutral-current axial-vector coupling \(g_A^f\). | |
| virtual const double | deltaGV_f (const Particle f) const |
| New physics contribution to the neutral-current vector coupling \(g_V^f\). | |
| const double | epsilon1 () const |
| The parameter \(\varepsilon_1\). | |
| const double | epsilon2 () const |
| The parameter \(\varepsilon_2\). | |
| const double | epsilon3 () const |
| The parameter \(\varepsilon_3\). | |
| const double | epsilonb () const |
| The parameter \(\varepsilon_b\). | |
| virtual const double | GammaW () const |
| The total width of the \(W\) boson, \(\Gamma_W\). | |
| virtual const double | Mw () const |
| The mass of the \(W\) boson, \(M_W\). | |
| NPEpsilons_pureNP () | |
| The default constructor. | |
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, \(\mathcal{A}_f\). | |
| 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, \(A^f_{FB}\). | |
| virtual const double | alphaMz () const |
| The electromagnetic coupling at the \(Z\)-mass scale, \(\alpha(M_Z^2)=\alpha/(1-\Delta\alpha(M_Z^2))\). | |
| 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]). | |
| 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]). | |
| virtual const double | Br_H_exo () const |
| The branching ratio of the of the Higgs into exotic particles. | |
| virtual const double | Br_H_inv () const |
| The branching ratio of the of the Higgs into invisible particles. | |
| virtual const double | Br_H_inv_NP () const |
| The branching ratio of the of the Higgs into invisible particles (only invisible new particles). | |
| virtual const double | BR_Zf (const Particle f) const |
| The Branching ratio of the \(Z\) boson into a given fermion pair, \(BR_Z^{f}\). | |
| virtual const double | BrH2d2dRatio () const |
| The ratio of the Br \((H\to 2d2d)\) in the current model and in the Standard Model. | |
| virtual const double | BrH2e2muRatio () const |
| The ratio of the Br \((H\to 2e 2\mu)\) in the current model and in the Standard Model. | |
| virtual const double | BrH2e2vRatio () const |
| The ratio of the Br \((H\to 2e2v)\) in the current model and in the Standard Model. | |
| virtual const double | BrH2evRatio () const |
| The ratio of the Br \((H\to 2ev)\) in the current model and in the Standard Model. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| virtual const double | BrH2mu2vRatio () const |
| The ratio of the Br \((H\to 2\mu 2v)\) in the current model and in the Standard Model. | |
| virtual const double | BrH2muvRatio () const |
| The ratio of the Br \((H\to 2ev)\) in the current model and in the Standard Model. | |
| virtual const double | BrH2u2dRatio () const |
| The ratio of the Br \((H\to 2u2d)\) in the current model and in the Standard Model. | |
| virtual const double | BrH2u2uRatio () const |
| The ratio of the Br \((H\to 2u2u)\) in the current model and in the Standard Model. | |
| virtual const double | BrH2udRatio () const |
| The ratio of the Br \((H\to 2ud)\) in the current model and in the Standard Model. | |
| virtual const double | BrH2v2dRatio () const |
| The ratio of the Br \((H\to 2v2d)\) in the current model and in the Standard Model. | |
| virtual const double | BrH2v2uRatio () const |
| The ratio of the Br \((H\to 2v2u)\) in the current model and in the Standard Model. | |
| virtual const double | BrH2v2vRatio () const |
| The ratio of the Br \((H\to 2v2v)\) in the current model and in the Standard Model. | |
| virtual const double | BrH4dRatio () const |
| The ratio of the Br \((H\to 4d)\) in the current model and in the Standard Model. | |
| virtual const double | BrH4eRatio () const |
| The ratio of the Br \((H\to 4e)\) in the current model and in the Standard Model. | |
| virtual const double | BrH4fRatio () const |
| The ratio of the Br \((H\to 4f)\) in the current model and in the Standard Model. | |
| 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. | |
| 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. | |
| 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. | |
| virtual const double | BrH4muRatio () const |
| The ratio of the Br \((H\to 4\mu)\) in the current model and in the Standard Model. | |
| virtual const double | BrH4uRatio () const |
| The ratio of the Br \((H\to 4u)\) in the current model and in the Standard Model. | |
| virtual const double | BrH4vRatio () const |
| The ratio of the Br \((H\to 4v)\) in the current model and in the Standard Model. | |
| virtual const double | BrHbbRatio () const |
| The ratio of the Br \((H\to b\bar{b})\) in the current model and in the Standard Model. | |
| virtual const double | BrHccRatio () const |
| The ratio of the Br \((H\to c\bar{c})\) in the current model and in the Standard Model. | |
| 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. | |
| virtual const double | BrHgagaRatio () const |
| The ratio of the Br \((H\to \gamma\gamma)\) in the current model and in the Standard Model. | |
| virtual const double | BrHggRatio () const |
| The ratio of the Br \((H\to gg)\) in the current model and in the Standard Model. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| virtual const double | BrHmumuRatio () const |
| The ratio of the Br \((H\to \mu^+\mu^-)\) in the current model and in the Standard Model. | |
| virtual const double | BrHssRatio () const |
| The ratio of the Br \((H\to s\bar{s})\) in the current model and in the Standard Model. | |
| virtual const double | BrHtautauRatio () const |
| The ratio of the Br \((H\to \tau^+\tau^-)\) in the current model and in the Standard Model. | |
| virtual const double | BrHtoinvRatio () const |
| The ratio of the Br \((H\to invisible)\) in the current model and in the Standard Model. | |
| virtual const double | BrHudduRatio () const |
| The ratio of the Br \((H\to uddu)\) in the current model and in the Standard Model. | |
| virtual const double | BrHvisRatio () const |
| The ratio of the Br \((H\to visible)\) in the current model and in the Standard Model. | |
| virtual const double | BrHVVRatio () const |
| The ratio of the Br \((H\to VV)\) in the current model and in the Standard Model. | |
| virtual const double | BrHWWRatio () const |
| The ratio of the Br \((H\to WW)\) in the current model and in the Standard Model. | |
| 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. | |
| 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. | |
| 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. | |
| virtual const double | BrHZgaRatio () const |
| The ratio of the Br \((H\to Z\gamma)\) in the current model and in the Standard Model. | |
| virtual const double | BrHZZRatio () const |
| The ratio of the Br \((H\to ZZ)\) in the current model and in the Standard Model. | |
| virtual const double | BrW (const Particle fi, const Particle fj) const |
| The branching ratio of the \(W\) boson decaying into a SM fermion pair, \(Br(W\to f_i f_j)\). | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| virtual const double | cbminuscc () const |
| virtual const double | cbminusctau () const |
| virtual const double | ccminusctau () const |
| virtual const double | CEWHd11 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hd})_{11}\). | |
| virtual const double | CEWHd22 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hd})_{22}\). | |
| virtual const double | CEWHd33 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hd})_{33}\). | |
| virtual const double | CEWHe11 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{He})_{11}\). | |
| virtual const double | CEWHe22 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{He})_{22}\). | |
| virtual const double | CEWHe33 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{He})_{33}\). | |
| virtual const double | CEWHL111 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(1)})_{11}\). | |
| virtual const double | CEWHL122 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(1)})_{22}\). | |
| virtual const double | CEWHL133 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(1)})_{33}\). | |
| virtual const double | CEWHL311 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(3)})_{11}\). | |
| virtual const double | CEWHL322 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(3)})_{22}\). | |
| virtual const double | CEWHL333 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HL}^{(3)})_{33}\). | |
| virtual const double | CEWHQ111 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(1)})_{11}\). | |
| virtual const double | CEWHQ122 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(1)})_{22}\). | |
| virtual const double | CEWHQ133 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(1)})_{33}\). | |
| virtual const double | CEWHQ311 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(3)})_{11}\). | |
| virtual const double | CEWHQ322 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(3)})_{22}\). | |
| virtual const double | CEWHQ333 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(3)})_{33}\). | |
| virtual const double | CEWHQd33 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{HQ}^{(d)})_{33}\). | |
| virtual const double | CEWHQu33 (const double mu) const |
| Combination of coefficients of the Warsaw basis not constrained by EWPO (at LO) \((\hat{C}_{HQ}^{(u)})_{33}\). | |
| virtual const double | CEWHu11 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hu})_{11}\). | |
| virtual const double | CEWHu22 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hu})_{22}\). | |
| virtual const double | CEWHu33 (const double mu) const |
| Combination of coefficients of the Warsaw basis constrained by EWPO \((\hat{C}_{Hu})_{33}\). | |
| virtual const double | cgaga_HB (const double mu) const |
| The Higgs-basis coupling \(c_{\gamma\gamma}\). (See LHCHXSWG-INT-2015-001 document.) | |
| virtual const double | cgaplusct () const |
| virtual const double | cgg_HB (const double mu) const |
| The Higgs-basis coupling \(c_{gg}\). (See LHCHXSWG-INT-2015-001 document.) | |
| 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.) | |
| virtual const double | cgminuscga () const |
| virtual const double | cgplusct () const |
| virtual const double | computeGammaTotalRatio () const |
| The ratio of the \(\Gamma(H)\) in the current model and in the Standard Model. | |
| virtual const double | cVpluscb () const |
| virtual const double | cVplusctau () const |
| virtual const double | cZBox_HB (const double mu) const |
| The Higgs-basis coupling \(c_{z\Box}\). (See LHCHXSWG-INT-2015-001 document.) | |
| virtual const double | cZga_HB (const double mu) const |
| The Higgs-basis coupling \(c_{z\gamma}\). (See LHCHXSWG-INT-2015-001 document.) | |
| virtual const double | cZZ_HB (const double mu) const |
| The Higgs-basis coupling \(c_{zz}\). (See LHCHXSWG-INT-2015-001 document.) | |
| virtual const double | Dalpha5hMz () const |
| The 5-quark contribution to the running of the em constant to the \(Z\) pole. \(\Delta\alpha_{had}^{(5)}(M_Z)\). | |
| 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. | |
| 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. | |
| 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 | 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, \(\delta \mathcal{A}_f\). | |
| 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, \(\Delta \mathcal{A}_f^{(2)}\). | |
| 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, \(\delta A^f_{FB}\). | |
| 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, \(\Delta A^f_{FB}\). | |
| virtual const double | deltacZ_HB (const double mu) const |
| The Higgs-basis coupling \(\delta c_z\). (See LHCHXSWG-INT-2015-001 document.) | |
| 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]. | |
| virtual const double | deltaeNP (const double mu) const |
| The new physics relative contribution to the EW coupling constant \(e\). | |
| virtual const double | deltaG1_hWW () const |
| The new physics contribution to the coupling of the effective interaction \(H W_{\mu\nu}^\dagger W^{\mu\nu}\). | |
| virtual const double | deltaG1_hWW_mu (const double mu) const |
| The new physics contribution to the coupling of the effective interaction \(H W_{\mu\nu}^\dagger W^{\mu\nu}\). | |
| virtual const double | deltaG1_hZA () const |
| The new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} F^{\mu\nu}\). | |
| virtual const double | deltaG1_hZA_mu (const double mu) const |
| The new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} F^{\mu\nu}\). | |
| 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. | |
| 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. | |
| virtual const double | deltaG1_hZZ () const |
| The new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} Z^{\mu\nu}\). | |
| virtual const double | deltaG1_hZZ_mu (const double mu) const |
| The new physics contribution to the coupling of the effective interaction \(H Z_{\mu\nu} Z^{\mu\nu}\). | |
| virtual const double | deltag1gaNP (const double mu) const |
| The new physics contribution to the anomalous triple gauge coupling \(g_{1,Z}\). | |
| virtual const double | deltag1ZNP (const double mu) const |
| The new physics contribution to the anomalous triple gauge coupling \(g_{1,Z}\). | |
| 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]. | |
| virtual const double | deltaG2_hWW () const |
| The new physics contribution to the coupling of the effective interaction \(H W_{\nu}^\dagger \partial^\mu W^{\mu\nu}\). | |
| virtual const double | deltaG2_hWW_mu (const double mu) const |
| The new physics contribution to the coupling of the effective interaction \(H W_{\nu}^\dagger \partial^\mu W^{\mu\nu}\). | |
| virtual const double | deltaG2_hZA () const |
| The new physics contribution to the coupling of the effective interaction \(H Z_{\nu} \partial^\mu F^{\mu\nu}\). | |
| virtual const double | deltaG2_hZA_mu (const double mu) const |
| The new physics contribution to the coupling of the effective interaction \(H Z_{\nu} \partial^\mu F^{\mu\nu}\). | |
| virtual const double | deltaG2_hZZ () const |
| The new physics contribution to the coupling of the effective interaction \(H Z_{\nu} \partial^\mu Z^{\mu\nu}\). | |
| virtual const double | deltaG2_hZZ_mu (const double mu) const |
| The new physics contribution to the coupling of the effective interaction \(H Z_{\nu} \partial^\mu Z^{\mu\nu}\). | |
| virtual const double | deltaG3_hWW () const |
| The new physics contribution to the coupling of the effective interaction \(H W_{\mu}^\dagger W^{\mu}\). | |
| virtual const double | deltaG3_hWW_mu (const double mu) const |
| The new physics contribution to the coupling of the effective interaction \(H W_{\mu}^\dagger W^{\mu}\). | |
| virtual const double | deltaG3_hZZ () const |
| The new physics contribution to the coupling of the effective interaction \(H Z_{\mu} Z^{\mu}\). | |
| virtual const double | deltaG3_hZZ_mu (const double mu) const |
| The new physics contribution to the coupling of the effective interaction \(H Z_{\mu} Z^{\mu}\). | |
| virtual const double | deltaG_hAA () const |
| The new physics contribution to the coupling of the effective interaction \(H F_{\mu\nu} F^{\mu\nu}\). | |
| virtual const double | deltaG_hAA_mu (const double mu) const |
| The new physics contribution to the coupling of the effective interaction \(H F_{\mu\nu} F^{\mu\nu}\). | |
| 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. | |
| 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. | |
| virtual gslpp::complex | deltaG_hff (const Particle p) const |
| The new physics contribution to the coupling of the effective interaction \(H f\bar{f}\). | |
| virtual gslpp::complex | deltaG_hff_mu (const Particle p, const double mu) const |
| The new physics contribution to the coupling of the effective interaction \(H f\bar{f}\). | |
| virtual const double | deltaG_hgg () const |
| The new physics contribution to the coupling of the effective interaction \(H G_{\mu\nu}^AG^{A \mu\nu}\). | |
| virtual const double | deltaG_hgg_mu (const double mu) const |
| The new physics contribution to the coupling of the effective interaction \(H G_{\mu\nu}^AG^{A \mu\nu}\). | |
| 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. | |
| 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. | |
| virtual const double | deltaG_hhhRatio () const |
| The new physics contribution to the Higgs self-coupling \( H H H\). Normalized to the SM value. | |
| 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. | |
| 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, \(\delta \Gamma_W\). | |
| 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, \(\delta \Gamma_Z^{f}\). | |
| virtual const double | deltaGamma_Z () const |
| The new physics contribution to the total decay width of the \(Z\) boson, \(\delta \Gamma_Z\). | |
| virtual const double | deltaGamma_Z_2 () const |
| The \(\mathcal{O}(\Lambda^{-4})\) new physics contribution to the total decay width of the \(Z\) boson, \(\Delta \Gamma_Z^{(2)}\). | |
| 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, \(\delta \Gamma_Z^{f}\). | |
| 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, \(\Delta \Gamma_{Z,f}^{(2)}\). | |
| virtual const double | deltaGamma_Zhad () const |
| The new physics contribution to the hadronic decay width of the \(Z\) boson, \(\delta \Gamma_{Z,had}\). | |
| virtual const double | deltaGamma_Zhad_2 () const |
| The \(\mathcal{O}(\Lambda^{-4})\) new physics contribution to the hadronic decay width of the \(Z\) boson, \(\Delta \Gamma_{Z,had}^{(2)}\). | |
| 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. | |
| const double | deltaGL_f_mu (const Particle p, const double mu) const |
| New physics contribution to the neutral-current left-handed coupling \(g_L^f\). | |
| virtual gslpp::complex | deltaGL_Wff (const Particle pbar, const Particle p) const |
| New physics contribution to the charged current coupling \(W_\mu \bar{f_L}\gamma^mu f_L\). | |
| virtual gslpp::complex | deltaGL_Wff_mu (const Particle pbar, const Particle p, const double mu) const |
| New physics contribution to the charged current coupling \(W_\mu \bar{f_L}\gamma^mu f_L\). | |
| const double | deltaGR_f_mu (const Particle p, const double mu) const |
| New physics contribution to the neutral-current right-handed coupling \(g_R^f\). | |
| virtual gslpp::complex | deltaGR_Wff (const Particle pbar, const Particle p) const |
| New physics contribution to the charged current coupling \(W_\mu \bar{f_R}\gamma^mu f_R\). | |
| virtual gslpp::complex | deltaGR_Wff_mu (const Particle pbar, const Particle p, const double mu) const |
| New physics contribution to the charged current coupling \(W_\mu \bar{f_R}\gamma^mu f_R\). | |
| 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 \(\kappa_{\gamma}\). | |
| 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]. | |
| virtual const double | deltaN_nu () const |
| The new physics contribution to the number of neutrinos dervied from the \(Z\) pole measurements. | |
| 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. | |
| 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: | |
| virtual const double | deltaR_inv () const |
| The new physics contribution to the ratio of invisible and leptonic (electron) decay widths of the \(Z\) boson, \(\delta R_{inv}\). | |
| 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: | |
| 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: | |
| 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, \(\delta \sigma_h^0\). | |
| 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, \(\Delta \sigma_h^{0,(2)}\). | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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]. | |
| 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. | |
| 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. | |
| 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. | |
| 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]. | |
| virtual const double | deltayb_HB (const double mu) const |
| The Higgs-basis coupling \(\delta y_b\). (See LHCHXSWG-INT-2015-001 document.) | |
| virtual const double | deltayc_HB (const double mu) const |
| The Higgs-basis coupling \(\delta y_c\). (See LHCHXSWG-INT-2015-001 document.) | |
| virtual const double | deltaymu_HB (const double mu) const |
| The Higgs-basis coupling \(\delta y_\mu\). (See LHCHXSWG-INT-2015-001 document.) | |
| virtual const double | deltays_HB (const double mu) const |
| The Higgs-basis coupling \(\delta y_s\). (See LHCHXSWG-INT-2015-001 document.) | |
| virtual const double | deltayt_HB (const double mu) const |
| The Higgs-basis coupling \(\delta y_t\). (See LHCHXSWG-INT-2015-001 document.) | |
| virtual const double | deltaytau_HB (const double mu) const |
| The Higgs-basis coupling \(\delta y_\tau\). (See LHCHXSWG-INT-2015-001 document.) | |
| 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. | |
| 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. | |
| 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. | |
| virtual const gslpp::complex | gA_f (const Particle f) const |
| The total (SM+NP) contribution to the neutral-current axial-vector coupling \(g_A^f\). | |
| virtual const double | Gamma_had () const |
| The hadronic decay width of the \(Z\) boson, \(\Gamma_{Z,had}\). | |
| virtual const double | Gamma_Z () const |
| The total decay width of the \(Z\) boson, \(\Gamma_Z\). | |
| virtual const double | Gamma_Zf (const Particle f) const |
| The decay width of the \(Z\) boson into a given fermion pair, \(\Gamma_Z^{f}\). | |
| virtual const double | GammaHbbRatio () const |
| The ratio of the \(\Gamma(H\to b\bar{b})\) in the current model and in the Standard Model. | |
| virtual const double | GammaHccRatio () const |
| The ratio of the \(\Gamma(H\to c\bar{c})\) in the current model and in the Standard Model. | |
| virtual const double | GammaHgagaRatio () const |
| The ratio of the \(\Gamma(H\to \gamma\gamma)\) in the current model and in the Standard Model. | |
| virtual const double | GammaHggRatio () const |
| The ratio of the \(\Gamma(H\to gg)\) in the current model and in the Standard Model. | |
| virtual const double | GammaHmumuRatio () const |
| The ratio of the \(\Gamma(H\to \mu^+\mu^-)\) in the current model and in the Standard Model. | |
| virtual const double | GammaHssRatio () const |
| The ratio of the \(\Gamma(H\to s\bar{s})\) in the current model and in the Standard Model. | |
| virtual const double | GammaHtautauRatio () const |
| The ratio of the \(\Gamma(H\to \tau^+\tau^-)\) in the current model and in the Standard Model. | |
| virtual const double | GammaHWWRatio () const |
| The ratio of the \(\Gamma(H\to WW)\) in the current model and in the Standard Model. | |
| virtual const double | GammaHZgaRatio () const |
| The ratio of the \(\Gamma(H\to Z\gamma)\) in the current model and in the Standard Model. | |
| virtual const double | GammaHZZRatio () const |
| The ratio of the \(\Gamma(H\to ZZ)\) in the current model and in the Standard Model. | |
| 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. | |
| virtual const StandardModel & | getTrueSM () const |
| A method to return a StandardModel object from NPbase. | |
| virtual const gslpp::complex | gV_f (const Particle f) const |
| The total (SM+NP) contribution to the neutral-current vector coupling \(g_V^f\). | |
| virtual const double | kappaAeff () const |
| The effective coupling \(\kappa_{A,eff}=\sqrt{\Gamma_{HAA}/\Gamma_{HAA}^{SM}}\). | |
| virtual const double | kappabeff () const |
| The effective coupling \(\kappa_{b,eff}=\sqrt{\Gamma_{Hbb}/\Gamma_{Hbb}^{SM}}\). | |
| virtual const double | kappaceff () const |
| The effective coupling \(\kappa_{c,eff}=\sqrt{\Gamma_{Hcc}/\Gamma_{Hcc}^{SM}}\). | |
| virtual const double | kappaGeff () const |
| The effective coupling \(\kappa_{G,eff}=\sqrt{\Gamma_{HGG}/\Gamma_{HGG}^{SM}}\). | |
| virtual const double | kappamueff () const |
| The effective coupling \(\kappa_{\mu,eff}=\sqrt{\Gamma_{H\mu\mu}/\Gamma_{H\mu\mu}^{SM}}\). | |
| virtual const double | kappataueff () const |
| The effective coupling \(\kappa_{\tau,eff}=\sqrt{\Gamma_{H\tau\tau}/\Gamma_{H\tau\tau}^{SM}}\). | |
| virtual const double | kappaW4feff () const |
| The effective coupling \(\kappa_{W4f,eff}=\sqrt{\Gamma_{H4f, CC}/\Gamma_{H4f, CC}^{SM}}\). | |
| virtual const double | kappaWeff () const |
| The effective coupling \(\kappa_{W,eff}=\sqrt{\Gamma_{HWW}/\Gamma_{HWW}^{SM}}\). | |
| virtual const double | kappaZ4feff () const |
| The effective coupling \(\kappa_{Z4f,eff}=\sqrt{\Gamma_{H4f, NC}/\Gamma_{H4f, NC}^{SM}}\). | |
| virtual const gslpp::complex | kappaZ_f (const Particle f) const |
| The effective neutral-current coupling \(\kappa_Z^f\) including SM plus NP contributions. | |
| virtual const double | kappaZAeff () const |
| The effective coupling \(\kappa_{ZA,eff}=\sqrt{\Gamma_{HZA}/\Gamma_{HZA}^{SM}}\). | |
| virtual const double | kappaZeff () const |
| The effective coupling \(\kappa_{Z,eff}=\sqrt{\Gamma_{HZZ}/\Gamma_{HZZ}^{SM}}\). | |
| virtual const double | lambdaZNP (const double mu) const |
| The new physics contribution to the anomalous triple gauge coupling \(\lambda_{Z}\). | |
| virtual const double | lambz_HB (const double mu) const |
| The Higgs-basis coupling \(\lambda_{z}\). (See LHCHXSWG-INT-2015-001 document.) | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| virtual const double | muggHbb (const double sqrt_s) const |
| virtual const double | muggHgaga (const double sqrt_s) const |
| 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. | |
| 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. | |
| virtual const double | muggHmumu (const double sqrt_s) const |
| 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 | 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. | |
| 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 | muggHtautau (const double sqrt_s) const |
| virtual const double | muggHWW (const double sqrt_s) const |
| virtual const double | muggHWW2l2v (const double sqrt_s) const |
| virtual const double | muggHZga (const double sqrt_s) const |
| virtual const double | muggHZZ (const double sqrt_s) const |
| virtual const double | muggHZZ4l (const double sqrt_s) const |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| virtual const double | muppHmumu (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. | |
| 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. | |
| virtual const double | mutHgaga (const double sqrt_s) const |
| 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. | |
| virtual const double | muTHUggHbb (const double sqrt_s) const |
| virtual const double | muTHUggHgaga (const double sqrt_s) const |
| virtual const double | muTHUggHmumu (const double sqrt_s) const |
| virtual const double | muTHUggHtautau (const double sqrt_s) const |
| virtual const double | muTHUggHWW (const double sqrt_s) const |
| virtual const double | muTHUggHWW2l2v (const double sqrt_s) const |
| virtual const double | muTHUggHZga (const double sqrt_s) const |
| virtual const double | muTHUggHZgamumu (const double sqrt_s) const |
| virtual const double | muTHUggHZZ (const double sqrt_s) const |
| virtual const double | muTHUggHZZ4l (const double sqrt_s) const |
| virtual const double | muTHUggHZZ4mu (const double sqrt_s) const |
| virtual const double | muTHUttHbb (const double sqrt_s) const |
| virtual const double | muTHUttHgaga (const double sqrt_s) const |
| virtual const double | muTHUttHmumu (const double sqrt_s) const |
| virtual const double | muTHUttHtautau (const double sqrt_s) const |
| virtual const double | muTHUttHWW (const double sqrt_s) const |
| virtual const double | muTHUttHWW2l2v (const double sqrt_s) const |
| virtual const double | muTHUttHZga (const double sqrt_s) const |
| virtual const double | muTHUttHZZ (const double sqrt_s) const |
| virtual const double | muTHUttHZZ4l (const double sqrt_s) const |
| virtual const double | muTHUVBFBRinv (const double sqrt_s) const |
| virtual const double | muTHUVBFHbb (const double sqrt_s) const |
| virtual const double | muTHUVBFHgaga (const double sqrt_s) const |
| virtual const double | muTHUVBFHinv (const double sqrt_s) const |
| virtual const double | muTHUVBFHmumu (const double sqrt_s) const |
| virtual const double | muTHUVBFHtautau (const double sqrt_s) const |
| virtual const double | muTHUVBFHWW (const double sqrt_s) const |
| virtual const double | muTHUVBFHWW2l2v (const double sqrt_s) const |
| virtual const double | muTHUVBFHZga (const double sqrt_s) const |
| virtual const double | muTHUVBFHZZ (const double sqrt_s) const |
| virtual const double | muTHUVBFHZZ4l (const double sqrt_s) const |
| virtual const double | muTHUVHbb (const double sqrt_s) const |
| virtual const double | muTHUVHBRinv (const double sqrt_s) const |
| virtual const double | muTHUVHgaga (const double sqrt_s) const |
| virtual const double | muTHUVHinv (const double sqrt_s) const |
| virtual const double | muTHUVHmumu (const double sqrt_s) const |
| virtual const double | muTHUVHtautau (const double sqrt_s) const |
| virtual const double | muTHUVHWW (const double sqrt_s) const |
| virtual const double | muTHUVHWW2l2v (const double sqrt_s) const |
| virtual const double | muTHUVHZga (const double sqrt_s) const |
| virtual const double | muTHUVHZZ (const double sqrt_s) const |
| virtual const double | muTHUVHZZ4l (const double sqrt_s) const |
| virtual const double | muTHUWHbb (const double sqrt_s) const |
| virtual const double | muTHUWHgaga (const double sqrt_s) const |
| virtual const double | muTHUWHmumu (const double sqrt_s) const |
| virtual const double | muTHUWHtautau (const double sqrt_s) const |
| virtual const double | muTHUWHWW (const double sqrt_s) const |
| virtual const double | muTHUWHWW2l2v (const double sqrt_s) const |
| virtual const double | muTHUWHZga (const double sqrt_s) const |
| virtual const double | muTHUWHZZ (const double sqrt_s) const |
| virtual const double | muTHUWHZZ4l (const double sqrt_s) const |
| virtual const double | muTHUZHbb (const double sqrt_s) const |
| virtual const double | muTHUZHgaga (const double sqrt_s) const |
| virtual const double | muTHUZHmumu (const double sqrt_s) const |
| virtual const double | muTHUZHtautau (const double sqrt_s) const |
| virtual const double | muTHUZHWW (const double sqrt_s) const |
| virtual const double | muTHUZHWW2l2v (const double sqrt_s) const |
| virtual const double | muTHUZHZga (const double sqrt_s) const |
| virtual const double | muTHUZHZZ (const double sqrt_s) const |
| virtual const double | muTHUZHZZ4l (const double sqrt_s) const |
| 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. | |
| virtual const double | muttHbb (const double sqrt_s) const |
| virtual const double | muttHgaga (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. | |
| virtual const double | muttHmumu (const double sqrt_s) const |
| 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 | muttHtautau (const double sqrt_s) const |
| virtual const double | muttHWW (const double sqrt_s) const |
| virtual const double | muttHWW2l2v (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. | |
| virtual const double | muttHZga (const double sqrt_s) const |
| virtual const double | muttHZZ (const double sqrt_s) const |
| virtual const double | muttHZZ4l (const double sqrt_s) const |
| 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. | |
| 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. | |
| virtual const double | muVBFHbb (const double sqrt_s) const |
| virtual const double | muVBFHgaga (const double sqrt_s) const |
| virtual const double | muVBFHmumu (const double sqrt_s) const |
| virtual const double | muVBFHtautau (const double sqrt_s) const |
| virtual const double | muVBFHWW (const double sqrt_s) const |
| virtual const double | muVBFHWW2l2v (const double sqrt_s) const |
| virtual const double | muVBFHZga (const double sqrt_s) const |
| virtual const double | muVBFHZZ (const double sqrt_s) const |
| virtual const double | muVBFHZZ4l (const double sqrt_s) const |
| 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. | |
| virtual const double | muVBFpVH_Hmumu (const double sqrt_s) const |
| virtual const double | muVBFpVH_HZga (const double sqrt_s) const |
| 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. | |
| virtual const double | muVHbb (const double sqrt_s) const |
| virtual const double | muVHcc (const double sqrt_s) const |
| virtual const double | muVHgaga (const double sqrt_s) const |
| virtual const double | muVHmumu (const double sqrt_s) const |
| 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. | |
| virtual const double | muVHtautau (const double sqrt_s) const |
| virtual const double | muVHWW (const double sqrt_s) const |
| virtual const double | muVHWW2l2v (const double sqrt_s) const |
| virtual const double | muVHZga (const double sqrt_s) const |
| virtual const double | muVHZZ (const double sqrt_s) const |
| virtual const double | muVHZZ4l (const double sqrt_s) const |
| 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. | |
| virtual const double | muWHbb (const double sqrt_s) const |
| virtual const double | muWHgaga (const double sqrt_s) const |
| virtual const double | muWHmumu (const double sqrt_s) const |
| 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. | |
| virtual const double | muWHtautau (const double sqrt_s) const |
| virtual const double | muWHWW (const double sqrt_s) const |
| virtual const double | muWHWW2l2v (const double sqrt_s) const |
| virtual const double | muWHZga (const double sqrt_s) const |
| virtual const double | muWHZZ (const double sqrt_s) const |
| virtual const double | muWHZZ4l (const double sqrt_s) const |
| 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. | |
| virtual const double | muZHbb (const double sqrt_s) const |
| virtual const double | muZHgaga (const double sqrt_s) const |
| virtual const double | muZHmumu (const double sqrt_s) const |
| 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. | |
| virtual const double | muZHtautau (const double sqrt_s) const |
| virtual const double | muZHWW (const double sqrt_s) const |
| virtual const double | muZHWW2l2v (const double sqrt_s) const |
| virtual const double | muZHZga (const double sqrt_s) const |
| virtual const double | muZHZZ (const double sqrt_s) const |
| virtual const double | muZHZZ4l (const double sqrt_s) const |
| virtual const double | N_nu () const |
| The number of neutrinos dervied from the \(Z\) pole measurements, \(N_{\nu}\). | |
| NPbase () | |
| The default constructor. | |
| virtual const double | obliqueS () const |
| The oblique parameter \(S\). | |
| virtual const double | obliqueT () const |
| The oblique parameter \(T\). | |
| virtual const double | obliqueU () const |
| The oblique parameter \(U\). | |
| virtual const double | obliqueW () const |
| The oblique parameter \(W\). | |
| virtual const double | obliqueY () const |
| The oblique parameter \(Y\). | |
| 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. | |
| 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. | |
| virtual const double | R_inv () const |
| The ratio of the invisible and leptonic (electron) decay widths of the \(Z\) boson, \(R_{inv}\). | |
| virtual const gslpp::complex | rhoZ_f (const Particle f) const |
| The effective neutral-current coupling \(\rho_Z^f\) including SM plus NP contributions. | |
| 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. | |
| virtual const double | RWc () const |
| The ratio \(R_{W,c)=\Gamma(W\to c + X)/\Gamma(W\to had)\). | |
| virtual const double | RWlilj (const Particle li, const Particle lj) const |
| The lepton universality ratio \(R_{W,l_i/l_j)=\Gamma(W\to l_i \nu_i)/\Gamma(W\to l_j \nu_j)\). | |
| virtual const double | RZlilj (const Particle li, const Particle lj) const |
| The lepton universality ratio \(R_{Z,l_i/l_j)=\Gamma(Z\to l_i^+ l_i^-)/\Gamma(Z\to l_j^+ l_j^-)\). | |
| virtual bool | setFlag (const std::string name, const bool value) |
| A method to set a flag of NPbase. | |
| virtual const double | sigma0_had () const |
| The cross section for the process \(e^+ e^-\to Z\to \mathrm{hadrons}\) at the \(Z\) pole, \(\sigma_h^0\). | |
| 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. | |
| virtual const double | STXS0_qqH (const double sqrt_s) const |
| The STXS0 bin \(pp \to H qq\). | |
| virtual const double | STXS12_BrH4lRatio () const |
| The STXS BR \( H \to 4l \), \(l=e,\mu\). | |
| virtual const double | STXS12_BrHbbRatio () const |
| The STXS BR \( H \to bb \). | |
| virtual const double | STXS12_BrHevmuvRatio () const |
| The STXS BR \( H \to e\nu \mu\nu \). | |
| virtual const double | STXS12_BrHgagaRatio () const |
| The STXS BR \( H \to \gamma \gamma \). | |
| virtual const double | STXS12_ggH_mjj0_350_pTH0_60_Nj1 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j \geq 1,~m_{jj}[GeV]<350,~p_{TH} [GeV]<60\). | |
| virtual const double | STXS12_ggH_mjj0_350_pTH0_60_Nj2 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j \geq 2,~m_{jj}[GeV]<350,~p_{TH} [GeV]<60\). | |
| virtual const double | STXS12_ggH_mjj0_350_pTH120_200_Nj2 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j \geq 2,~m_{jj}[GeV]<350,~120<p_{TH} [GeV]<200\). | |
| virtual const double | STXS12_ggH_mjj0_350_pTH60_120_Nj2 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j \geq 2,~m_{jj}[GeV]<350,~60<p_{TH} [GeV]<120\). | |
| virtual const double | STXS12_ggH_mjj350_700_pTH0_200_Nj2 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH} [GeV]<200\). | |
| virtual const double | STXS12_ggH_mjj350_700_pTH0_200_ptHjj0_25_Nj2 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH} [GeV]<200,~p_{THjj}[GeV]<25\). | |
| virtual const double | STXS12_ggH_mjj350_700_pTH0_200_ptHjj25_Inf_Nj2 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH} [GeV]<200,~25<p_{THjj}[GeV]\). | |
| virtual const double | STXS12_ggH_mjj700_Inf_pTH0_200_Nj2 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j \geq 2,~700<m_{jj}[GeV],~p_{TH} [GeV]<200\). | |
| virtual const double | STXS12_ggH_mjj700_Inf_pTH0_200_ptHjj0_25_Nj2 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j \geq 2,~700<m_{jj}[GeV],~p_{TH} [GeV]<200,~p_{THjj}[GeV]<25\). | |
| virtual const double | STXS12_ggH_mjj700_Inf_pTH0_200_ptHjj25_Inf_Nj2 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j \geq 2,~700<m_{jj}[GeV],~p_{TH} [GeV]<200,~25<p_{THjj}[GeV]\). | |
| virtual const double | STXS12_ggH_pTH0_10_Nj0 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j=0,~p_{TH} [GeV]<10\). | |
| virtual const double | STXS12_ggH_pTH0_60_Nj1 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j = 1,~p_{TH} [GeV]<60\). | |
| virtual const double | STXS12_ggH_pTH10_200_Nj0 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j = 0, 10<~p_{TH} [GeV]<200\). | |
| virtual const double | STXS12_ggH_pTH10_Inf_Nj0 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j=0,~10<p_{TH} [GeV]\). | |
| virtual const double | STXS12_ggH_pTH120_200_Nj1 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j = 1,~120<p_{TH} [GeV]<200\). | |
| virtual const double | STXS12_ggH_pTH200_300 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(~200<p_{TH} [GeV]<300\). | |
| virtual const double | STXS12_ggH_pTH200_300_Nj01 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j\leq 1,~200<p_{TH} [GeV]<300\). | |
| virtual const double | STXS12_ggH_pTH300_450 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(~300<p_{TH} [GeV]<450\). | |
| virtual const double | STXS12_ggH_pTH300_450_Nj01 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j\leq 1,~300<p_{TH} [GeV]<450\). | |
| virtual const double | STXS12_ggH_pTH450_650 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(450<~p_{TH} [GeV]<650\). | |
| virtual const double | STXS12_ggH_pTH450_650_Nj01 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j\leq 1,~450<p_{TH} [GeV]<650\). | |
| virtual const double | STXS12_ggH_pTH450_Inf (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(~p_{TH} [GeV]>450\). | |
| virtual const double | STXS12_ggH_pTH60_120_Nj1 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j = 1,~60<p_{TH} [GeV]<120\). | |
| virtual const double | STXS12_ggH_pTH650_Inf (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(~p_{TH} [GeV]>650\). | |
| virtual const double | STXS12_ggH_pTH650_Inf_Nj01 (const double sqrt_s) const |
| The STXS bin \(gg \to H\), \(N_j\leq 1,650<p_{TH} [GeV]\). | |
| virtual const double | STXS12_ggHll_pTV0_75 (const double sqrt_s) const |
| The STXS bin \(gg \to H\ell\ell\), \(p_{TV}[GeV]<75\). | |
| virtual const double | STXS12_ggHll_pTV150_250_Nj0 (const double sqrt_s) const |
| The STXS bin \(gg \to H\ell\ell\), \(N_j = 0,~150<p_{TV}[GeV]<250\). | |
| virtual const double | STXS12_ggHll_pTV150_250_Nj1 (const double sqrt_s) const |
| The STXS bin \(gg \to H\ell\ell\), \(N_j = 1,~150<p_{TV}[GeV]<250\). | |
| virtual const double | STXS12_ggHll_pTV250_Inf (const double sqrt_s) const |
| The STXS bin \(gg \to H\ell\ell\), \(250 < p_{TV}[GeV]\). | |
| virtual const double | STXS12_ggHll_pTV75_150 (const double sqrt_s) const |
| The STXS bin \(gg \to H\ell\ell\), \(75<p_{TV}[GeV]<150\). | |
| virtual const double | STXS12_qqHll_pTV0_150 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\ell\), \(0<p_{TV}<150[GeV]\). | |
| virtual const double | STXS12_qqHll_pTV0_75 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\ell\), \(p_{TV}[GeV]<75\). | |
| virtual const double | STXS12_qqHll_pTV150_250_Nj0 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\ell\), \(N_j = 0,~150<p_{TV}[GeV]<250\). | |
| virtual const double | STXS12_qqHll_pTV150_250_Nj1 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\ell\), \(N_j \geq 1,~150<p_{TV}[GeV]<250\). | |
| virtual const double | STXS12_qqHll_pTV250_400 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\ell\), \(250<p_{TV}<400[GeV]\). | |
| virtual const double | STXS12_qqHll_pTV250_Inf (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\ell\), \(250<p_{TV}[GeV]\). | |
| virtual const double | STXS12_qqHll_pTV400_Inf (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\ell\), \(400<p_{TV}[GeV]\). | |
| virtual const double | STXS12_qqHll_pTV75_150 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\ell\), \(75<p_{TV}[GeV]<150\). | |
| virtual const double | STXS12_qqHlv_pTV0_150 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\nu\), \(0<p_{TV}<150[GeV]\). | |
| virtual const double | STXS12_qqHlv_pTV0_75 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\nu\), \(p_{TV}[GeV]<75\). | |
| virtual const double | STXS12_qqHlv_pTV150_250_Nj0 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\nu\), \(N_j = 0,~150<p_{TV}[GeV]<250\). | |
| virtual const double | STXS12_qqHlv_pTV150_250_Nj1 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\nu\), \(N_j \geq 1,~150<p_{TV}[GeV]<250\). | |
| virtual const double | STXS12_qqHlv_pTV250_400 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\nu\), \(250<p_{TV}<400[GeV]\). | |
| virtual const double | STXS12_qqHlv_pTV250_Inf (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\nu\), \(250<p_{TV}[GeV]\). | |
| virtual const double | STXS12_qqHlv_pTV400_Inf (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\nu\), \(400<p_{TV}[GeV]\). | |
| virtual const double | STXS12_qqHlv_pTV75_150 (const double sqrt_s) const |
| The STXS bin \(qq \to H\ell\nu\), \(75<p_{TV}[GeV]<150\). | |
| virtual const double | STXS12_qqHqq_mjj0_60_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~m_{jj}[GeV]<60\). | |
| virtual const double | STXS12_qqHqq_mjj1000_1500_pTH0_200_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~1000<m_{jj}[GeV]<1500,~p_{TH}[GeV]<200\). | |
| virtual const double | STXS12_qqHqq_mjj1000_Inf_pTH200_Inf_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~1000<m_{jj}[GeV],~p_{TH}[GeV]>200\). | |
| virtual const double | STXS12_qqHqq_mjj120_350_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~120<m_{jj}[GeV]<350\). | |
| virtual const double | STXS12_qqHqq_mjj1500_Inf_pTH0_200_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~1500<m_{jj}[GeV],~p_{TH}[GeV]<200\). | |
| virtual const double | STXS12_qqHqq_mjj350_1000_pTH200_Inf_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~350<m_{jj}[GeV]<1000,~p_{TH}[GeV]>200\). | |
| virtual const double | STXS12_qqHqq_mjj350_700_pTH0_200_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH}[GeV]<200\). | |
| virtual const double | STXS12_qqHqq_mjj350_700_pTH0_200_pTHjj0_25_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH}[GeV]<200,~p_{THjj}[GeV]<25\). | |
| virtual const double | STXS12_qqHqq_mjj350_700_pTH0_200_pTHjj25_Inf_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~350<m_{jj}[GeV]<700,~p_{TH}[GeV]<200,~25<p_{THjj}[GeV]\). | |
| virtual const double | STXS12_qqHqq_mjj350_Inf_pTH200_Inf_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~350<m_{jj}[GeV],~200<p_{TH}[GeV]\). | |
| virtual const double | STXS12_qqHqq_mjj60_120_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~60<m_{jj}[GeV]<120\). | |
| virtual const double | STXS12_qqHqq_mjj700_1000_pTH0_200_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~700<m_{jj}[GeV]<1000,~p_{TH}[GeV]<200\). | |
| virtual const double | STXS12_qqHqq_mjj700_Inf_pTH0_200_pTHjj0_25_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~700<m_{jj}[GeV],~p_{TH}[GeV]<200,~p_{THjj}[GeV]<25\). | |
| virtual const double | STXS12_qqHqq_mjj700_Inf_pTH0_200_pTHjj25_Inf_Nj2 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j \geq 2,~700<m_{jj}[GeV],~p_{TH}[GeV]<200,~25<p_{THjj}[GeV]\). | |
| virtual const double | STXS12_qqHqq_Nj0 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j = 0\). | |
| virtual const double | STXS12_qqHqq_Nj1 (const double sqrt_s) const |
| The STXS bin \(qq \to Hqq\), \(N_j = 1\). | |
| 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. | |
| virtual const double | STXS12_tH (const double sqrt_s) const |
| The STXS bin \(pp \to tH\). | |
| virtual const double | STXS12_ttH_pTH0_60 (const double sqrt_s) const |
| The STXS bin \(pp \to ttH\), \(p_{TH}[GeV]<60\). | |
| virtual const double | STXS12_ttH_pTH120_200 (const double sqrt_s) const |
| The STXS bin \(pp \to ttH\), \(120<p_{TH}[GeV]<200\). | |
| virtual const double | STXS12_ttH_pTH200_300 (const double sqrt_s) const |
| The STXS bin \(pp \to ttH\), \(200<p_{TH}[GeV]<300\). | |
| virtual const double | STXS12_ttH_pTH300_450 (const double sqrt_s) const |
| The STXS bin \(pp \to ttH\), \(300<p_{TH}[GeV]<450\). | |
| virtual const double | STXS12_ttH_pTH300_Inf (const double sqrt_s) const |
| The STXS bin \(pp \to ttH\), \(300<p_{TH}[GeV]\). | |
| virtual const double | STXS12_ttH_pTH450_Inf (const double sqrt_s) const |
| The STXS bin \(pp \to ttH\), \(450<p_{TH}[GeV]\). | |
| virtual const double | STXS12_ttH_pTH60_120 (const double sqrt_s) const |
| The STXS bin \(pp \to ttH\), \(60<p_{TH}[GeV]<120\). | |
| virtual const double | STXS_ggH0j (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_ggH1j_pTH_0_60 (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_ggH1j_pTH_120_200 (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_ggH1j_pTH_200 (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_ggH1j_pTH_60_120 (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_ggH2j_pTH_0_200 (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_ggH2j_pTH_0_60 (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_ggH2j_pTH_120_200 (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_ggH2j_pTH_200 (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_ggH2j_pTH_60_120 (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_ggH_VBFtopo_j3 (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_ggH_VBFtopo_j3v (const double sqrt_s) const |
| The STXS bin \(gg \to H\). | |
| virtual const double | STXS_qqHll_pTV_0_150 (const double sqrt_s) const |
| The STXS bin \(qq \to H \ell \ell\). | |
| virtual const double | STXS_qqHll_pTV_150_250 (const double sqrt_s) const |
| The STXS bin \(qq \to H \ell \ell\). | |
| virtual const double | STXS_qqHll_pTV_150_250_0j (const double sqrt_s) const |
| The STXS bin \(qq \to H \ell \ell\). | |
| virtual const double | STXS_qqHll_pTV_150_250_1j (const double sqrt_s) const |
| The STXS bin \(qq \to H \ell \ell\). | |
| virtual const double | STXS_qqHll_pTV_250 (const double sqrt_s) const |
| The STXS bin \(qq \to H \ell \ell\). | |
| virtual const double | STXS_qqHlv_pTV_0_150 (const double sqrt_s) const |
| The STXS bin \(qq \to H \ell \nu\). | |
| virtual const double | STXS_qqHlv_pTV_0_250 (const double sqrt_s) const |
| The STXS bin \(qq \to H \ell \nu\). | |
| virtual const double | STXS_qqHlv_pTV_150_250_0j (const double sqrt_s) const |
| The STXS bin \(qq \to H \ell \nu\). | |
| virtual const double | STXS_qqHlv_pTV_150_250_1j (const double sqrt_s) const |
| The STXS bin \(qq \to H \ell \nu\). | |
| virtual const double | STXS_qqHlv_pTV_250 (const double sqrt_s) const |
| The STXS bin \(qq \to H \ell \nu\). | |
| virtual const double | STXS_qqHqq_nonVHtopo (const double sqrt_s) const |
| The STXS bin \(qq \to H qq\). | |
| virtual const double | STXS_qqHqq_pTj_200 (const double sqrt_s) const |
| The STXS bin \(qq \to H qq\). | |
| virtual const double | STXS_qqHqq_Rest (const double sqrt_s) const |
| The STXS bin \(qq \to H qq\). | |
| virtual const double | STXS_qqHqq_VBFtopo_j3 (const double sqrt_s) const |
| The STXS bin \(qq \to H qq\). | |
| virtual const double | STXS_qqHqq_VBFtopo_j3v (const double sqrt_s) const |
| The STXS bin \(qq \to H qq\). | |
| virtual const double | STXS_qqHqq_VBFtopo_Rest (const double sqrt_s) const |
| The STXS bin \(qq \to H qq\). | |
| virtual const double | STXS_qqHqq_VHtopo (const double sqrt_s) const |
| The STXS bin \(qq \to H qq\). | |
| virtual const double | STXS_ttHtH (const double sqrt_s) const |
| The STXS bin \( ttH + tH \). | |
| virtual const double | STXS_WHqqHqq_pTj1_200 (const double sqrt_s) const |
| The STXS bin \( qq \to WH \to H qq \). | |
| virtual const double | STXS_WHqqHqq_Rest (const double sqrt_s) const |
| The STXS bin \( qq \to WH \to H qq \). | |
| virtual const double | STXS_WHqqHqq_VBFtopo_j3 (const double sqrt_s) const |
| The STXS bin \( qq \to WH \to H qq \). | |
| virtual const double | STXS_WHqqHqq_VBFtopo_j3v (const double sqrt_s) const |
| The STXS bin \( qq \to WH \to H qq \). | |
| virtual const double | STXS_WHqqHqq_VH2j (const double sqrt_s) const |
| The STXS bin \( qq \to WH \to H qq \). | |
| virtual const double | STXS_ZHqqHqq_pTj1_200 (const double sqrt_s) const |
| The STXS bin \( qq \to ZH \to H qq \). | |
| virtual const double | STXS_ZHqqHqq_Rest (const double sqrt_s) const |
| The STXS bin \( qq \to ZH \to H qq \). | |
| virtual const double | STXS_ZHqqHqq_VBFtopo_j3 (const double sqrt_s) const |
| The STXS bin \( qq \to ZH \to H qq \). | |
| virtual const double | STXS_ZHqqHqq_VBFtopo_j3v (const double sqrt_s) const |
| The STXS bin \( qq \to ZH \to H qq \). | |
| virtual const double | STXS_ZHqqHqq_VH2j (const double sqrt_s) const |
| The STXS bin \( qq \to ZH \to H qq \). | |
| virtual bool | Update (const std::map< std::string, double > &DPars) |
| The update method for NPbase. | |
| virtual const double | UpperLimitZgammaA (const double sqrt_s) const |
| virtual const double | UpperLimitZgammaA13 (const double sqrt_s) const |
| virtual const double | UpperLimitZgammaC (const double sqrt_s) const |
| virtual const double | UpperLimitZgammaC13 (const double sqrt_s) const |
| virtual const double | xseeWW (const double sqrt_s) const |
| Total \(e^+ e^- \to W^+ W^- \to jj \ell \nu\) cross section in pb, with \(\ell= e, \mu\). | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
| 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. | |
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. | |
| gslpp::complex | AH_W (const double tau) const |
| W loop function entering in the calculation of the effective \(H\gamma\gamma\) coupling. | |
| gslpp::complex | AHZga_f (const double tau, const double lambda) const |
| Fermionic loop function entering in the calculation of the effective \(HZ\gamma\) coupling. | |
| gslpp::complex | AHZga_W (const double tau, const double lambda) const |
| W loop function entering in the calculation of the effective \(HZ\gamma\) coupling. | |
| const double | Ale (double mu, orders order, bool Nf_thr=true) const |
| The running electromagnetic coupling \(\alpha_e(\mu)\) in the \(\overline{MS}\) scheme. | |
| const double | ale_OS (const double mu, orders order=FULLNLO) const |
| The running electromagnetic coupling \(\alpha(\mu)\) in the on-shell scheme. | |
| virtual const double | alrmoller (const double q2, const double y) const |
| The computation of the parity violating asymmetry in Moller scattering. | |
| 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(). | |
| 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. | |
| 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. | |
| virtual const double | amuon () const |
| The computation of the anomalous magnetic moment of the muon \(a_\mu=(g_\mu-2)/2\). | |
| const double | Beta_e (int nm, unsigned int nf) const |
| QED beta function coefficients - eq. (36) hep-ph/0512066. | |
| const double | Beta_s (int nm, unsigned int nf) const |
| QCD beta function coefficients including QED corrections - eq. (36) hep-ph/0512066. | |
| virtual const double | BrHtobb () const |
| The Br \((H\to b \bar{b})\) in the Standard Model. | |
| virtual const double | BrHtocc () const |
| The Br \((H\to c \bar{c})\) in the Standard Model. | |
| virtual const double | BrHtogaga () const |
| The Br \((H\to \gamma \gamma)\) in the Standard Model. | |
| virtual const double | BrHtogg () const |
| The Br \(\(H\to gg)\) in the Standard Model. | |
| virtual const double | BrHtomumu () const |
| The Br \((H\to \mu^+ \mu^-)\) in the Standard Model. | |
| virtual const double | BrHtoss () const |
| The Br \((H\to s \bar{s})\) in the Standard Model. | |
| virtual const double | BrHtotautau () const |
| The Br \((H\to \tau^+ \tau^-)\) in the Standard Model. | |
| virtual const double | BrHtoWWstar () const |
| The Br \((H\to W W^*)\) in the Standard Model. | |
| virtual const double | BrHtoZga () const |
| The Br \((H\to Z \gamma)\) in the Standard Model. | |
| virtual const double | BrHtoZZstar () const |
| The Br \((H\to Z Z^*)\) in the Standard Model. | |
| const double | c02 () const |
| The square of the cosine of the weak mixing angle \(c_0^2\) defined without weak radiative corrections. | |
| virtual bool | CheckFlags () const |
| A method to check the sanity of the set of model flags. | |
| bool | checkSMparamsForEWPO () |
| A method to check whether the parameters relevant to the EWPO are updated. | |
| const double | computeBrHto4f () const |
| The Br \((H\to 4f)\) in the Standard Model. | |
| const double | computeBrHto4l2 () const |
| The Br \((H\to 4l)\) \(l=e,\mu\) in the Standard Model. | |
| const double | computeBrHto4l3 () const |
| The Br \((H\to 4l)\) \(l=e,\mu,\tau\) in the Standard Model. | |
| const double | computeBrHto4q () const |
| The Br \((H\to 4q)\) in the Standard Model. | |
| const double | computeBrHto4v () const |
| The Br \((H\to 4\nu)\) in the Standard Model. | |
| const double | computeBrHtobb () const |
| The Br \((H\to bb)\) in the Standard Model. | |
| const double | computeBrHtocc () const |
| The Br \((H\to cc)\) in the Standard Model. | |
| const double | computeBrHtoevmuv () const |
| The Br \((H\to e \nu \mu \nu)\) in the Standard Model. | |
| const double | computeBrHtogaga () const |
| The Br \((H\to\gamma\gamma)\) in the Standard Model. | |
| const double | computeBrHtogg () const |
| The Br \((H\to gg)\) in the Standard Model. | |
| const double | computeBrHtollvv2 () const |
| The Br \((H\to l^+ l^- \nu \nu)\) \(l=e,\mu\) in the Standard Model. | |
| const double | computeBrHtollvv3 () const |
| The Br \((H\to l^+ l^- \nu \nu)\) \(l=e,\mu,\tau\) in the Standard Model. | |
| const double | computeBrHtomumu () const |
| The Br \((H\to \mu\mu)\) in the Standard Model. | |
| const double | computeBrHtoss () const |
| The Br \((H\to ss)\) in the Standard Model. | |
| const double | computeBrHtotautau () const |
| The Br \((H\to \tau\tau)\) in the Standard Model. | |
| const double | computeBrHtoWW () const |
| The Br \((H\to WW)\) in the Standard Model. | |
| const double | computeBrHtoZga () const |
| The Br \((H\to Z\gamma)\) in the Standard Model. | |
| const double | computeBrHtoZZ () const |
| The Br \((H\to ZZ)\) in the Standard Model. | |
| 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. | |
| void | ComputeDeltaRho (const double Mw_i, double DeltaRho[orders_EW_size]) const |
| A method to collect \(\Delta\rho\) computed via subclasses. | |
| const double | computeGammaHgaga_tt () const |
| The top loop contribution to \(H\to\gamma\gamma\) in the Standard Model. | |
| const double | computeGammaHgaga_tW () const |
| The mixed \(t-W\) loop contribution to \(H\to\gamma\gamma\) in the Standard Model. | |
| const double | computeGammaHgaga_WW () const |
| The \(W\) loop contribution to \(H\to\gamma\gamma\) in the Standard Model. | |
| const double | computeGammaHgg_bb () const |
| The bottom loop contribution to \(H\to gg\) in the Standard Model. | |
| const double | computeGammaHgg_tb () const |
| The top-bottom interference contribution to \(H\to gg\) in the Standard Model. | |
| const double | computeGammaHgg_tt () const |
| The top loop contribution to \(H\to gg\) in the Standard Model. | |
| const double | computeGammaHTotal () const |
| The Higgs total width in the Standard Model. | |
| const double | computeGammaHZga_tt () const |
| The top loop contribution to \(H\to Z\gamma\) in the Standard Model. | |
| const double | computeGammaHZga_tW () const |
| The mixed \(t-W\) loop contribution to \(H\to Z\gamma\) in the Standard Model. | |
| 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]. | |
| const double | computeSigmabbH (const double sqrt_s) const |
| The bbH production cross section in the Standard Model. | |
| const double | computeSigmaggH (const double sqrt_s) const |
| The ggH cross section in the Standard Model. | |
| 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. | |
| const double | computeSigmaggH_tb (const double sqrt_s) const |
| The top-bottom interference contribution to the ggH cross section in the Standard Model. | |
| 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. | |
| const double | computeSigmatHq (const double sqrt_s) const |
| The tHq production cross section in the Standard Model. | |
| const double | computeSigmattH (const double sqrt_s) const |
| The ttH production cross section in the Standard Model. | |
| const double | computeSigmaVBF (const double sqrt_s) const |
| The VBF cross section in the Standard Model. | |
| const double | computeSigmaWF (const double sqrt_s) const |
| The W fusion contribution \(\sigma_{WF}\) 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 | computeSigmaZF (const double sqrt_s) const |
| The Z fusion contribution \(\sigma_{ZF}\) to higgs-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 | computeSigmaZWF (const double sqrt_s) const |
| The Z W interference fusion contribution \(\sigma_{ZWF}\) to higgs-production cross section in the Standard Model. | |
| 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 \(c_W^2\). | |
| const double | DeltaAlpha () const |
| The total corrections to the electromagnetic coupling \(\alpha\) at the \(Z\)-mass scale, denoted as \(\Delta\alpha(M_Z^2)\). | |
| 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 \(\Delta\alpha^{\ell+5q}(M_Z^2)\). | |
| const double | DeltaAlphaLepton (const double s) const |
| Leptonic contribution to the electromagnetic coupling \(\alpha\), denoted as \(\Delta\alpha_{\mathrm{lept}}(s)\). | |
| const double | DeltaAlphaTop (const double s) const |
| Top-quark contribution to the electromagnetic coupling \(\alpha\), denoted as \(\Delta\alpha_{\mathrm{top}}(s)\). | |
| virtual const gslpp::complex | deltaKappaZ_f (const Particle f) const |
| Flavour non-universal vertex corrections to \(\kappa_Z^l\), denoted by \(\Delta\kappa_Z^l\). | |
| virtual const double | DeltaR () const |
| The SM prediction for \(\Delta r\) derived from that for the \(W\) boson mass. | |
| virtual const double | DeltaRbar () const |
| The SM prediction for \(\Delta \overline{r}\) derived from that for the \(W\)-boson mass. | |
| virtual const gslpp::complex | deltaRhoZ_f (const Particle f) const |
| Flavour non-universal vertex corrections to \(\rho_Z^l\), denoted by \(\Delta\rho_Z^l\). | |
| 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 | eeffsigma (const Particle f, const double pol_e, const double pol_p, const double s, const double cosmin, const double cosmax) 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 |
| const double | eeffsigmaEbin (const double pol_e, const double pol_p, const double s, const double cosmin, const double cosmax) 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 |
| gslpp::complex | f_triangle (const double tau) const |
| Loop function entering in the calculation of the effective \(Hgg\) and \(H\gamma\gamma\) couplings. | |
| gslpp::complex | g_triangle (const double tau) const |
| Loop function entering in the calculation of the effective \(HZ\gamma\) coupling. | |
| virtual const double | Gamma_inv () const |
| The invisible partial decay width of the \(Z\) boson, \(\Gamma_{\mathrm{inv}}\). | |
| virtual const double | Gamma_muon () const |
| The computation of the muon decay. | |
| virtual const double | Gamma_tau_l_nunu (const Particle l) const |
| The computation of the leptonic tau decays. | |
| virtual const double | GammaHtobb () const |
| The \(\Gamma(H\to b \bar{b})\) in the Standard Model. | |
| virtual const double | GammaHtocc () const |
| The \(\Gamma(H\to c \bar{c})\) in the Standard Model. | |
| virtual const double | GammaHtogaga () const |
| The \(\Gamma(H\to \gamma \gamma)\) in the Standard Model. | |
| virtual const double | GammaHtogg () const |
| The \(\Gamma(H\to gg)\) in the Standard Model. | |
| virtual const double | GammaHtomumu () const |
| The \(\Gamma(H\to \mu^+ \mu^-)\) in the Standard Model. | |
| virtual const double | GammaHtoss () const |
| The \(\Gamma(H\to s \bar{s})\) in the Standard Model. | |
| virtual const double | GammaHTot () const |
| The total Higgs width \(\Gamma(H)\) in the Standard Model. | |
| virtual const double | GammaHtotautau () const |
| The \(\Gamma(H\to \tau^+ \tau^-)\) in the Standard Model. | |
| virtual const double | GammaHtoWWstar () const |
| The \(\Gamma(H\to W W^*)\) in the Standard Model. | |
| virtual const double | GammaHtoZga () const |
| The \(\Gamma(H\to Z \gamma)\) in the Standard Model. | |
| virtual const double | GammaHtoZZstar () const |
| The \(\Gamma(H\to Z Z^*)\) in the Standard Model. | |
| virtual const double | GammaZ (const Particle f) const |
| The \(Z\to \ell\bar{\ell}\) partial decay width, \(\Gamma_\ell\). | |
| virtual const double | gAnue () const |
| The effective (muon) neutrino-electron axial-vector coupling: gAnue. | |
| const double | getAle () const |
| A get method to retrieve the fine-structure constant \(\alpha\). | |
| const double | getAlsMz () const |
| A get method to access the value of \(\alpha_s(M_Z)\). | |
| virtual const double | getCBd () const |
| The ratio of the absolute value of the $B_d$ mixing amplitude over the Standard Model value. | |
| virtual const double | getCBs () const |
| The ratio of the absolute value of the $B_s$ mixing amplitude over the Standard Model value. | |
| virtual const double | getCCC1 () const |
| A virtual implementation for the RealWeakEFTCC class. | |
| virtual const double | getCCC2 () const |
| A virtual implementation for the RealWeakEFTCC class. | |
| virtual const double | getCCC3 () const |
| A virtual implementation for the RealWeakEFTCC class. | |
| virtual const double | getCCC4 () const |
| A virtual implementation for the RealWeakEFTCC class. | |
| virtual const double | getCCC5 () const |
| A virtual implementation for the RealWeakEFTCC class. | |
| virtual const double | getCDMK () const |
| The ratio of the real part of the $K$ mixing amplitude over the Standard Model value. | |
| virtual const double | getCepsK () const |
| The ratio of the imaginary part of the $K$ mixing amplitude over the Standard Model value. | |
| const CKM & | getCKM () const |
| A get method to retrieve the member object of type CKM. | |
| const double | getDAle5Mz () const |
| A get method to retrieve the five-flavour hadronic contribution to the electromagnetic coupling, \(\Delta\alpha_{\mathrm{had}}^{(5)}(M_Z^2)\). | |
| const double | getDelGammaWlv () const |
| A get method to retrieve the theoretical uncertainty in \(\Gamma_W_{l\nu}\), denoted as \(\delta\,\Gamma_W_{l\nu}\). | |
| const double | getDelGammaWqq () const |
| A get method to retrieve the theoretical uncertainty in \(\Gamma_W_{qq}\), denoted as \(\delta\,\Gamma_W_{qq}\). | |
| const double | getDelGammaZ () const |
| A get method to retrieve the theoretical uncertainty in \(\Gamma_Z\), denoted as \(\delta\,\Gamma_Z\). | |
| const double | getDelMw () const |
| A get method to retrieve the theoretical uncertainty in \(M_W\), denoted as \(\delta\,M_W\). | |
| const double | getDelR0b () const |
| A get method to retrieve the theoretical uncertainty in \(R_b^0\), denoted as \(\delta\,R_b^0\). | |
| const double | getDelR0c () const |
| A get method to retrieve the theoretical uncertainty in \(R_c^0\), denoted as \(\delta\,R_c^0\). | |
| const double | getDelR0l () const |
| A get method to retrieve the theoretical uncertainty in \(R_l^0\), denoted as \(\delta\,R_l^0\). | |
| const double | getDelSigma0H () const |
| A get method to retrieve the theoretical uncertainty in \(\sigma_{Hadron}^0\), denoted as \(\delta\,\sigma_{Hadron}^0\). | |
| const double | getDelSin2th_b () const |
| A get method to retrieve the theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{b}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{b}\). | |
| const double | getDelSin2th_l () const |
| A get method to retrieve the theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{\rm lept}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{\rm lept}\). | |
| 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 \(\delta\sin^2\theta_{\rm eff}^{q\not = b,t}\). | |
| const std::string | getFlagKappaZ () const |
| A method to retrieve the model flag KappaZ. | |
| const std::string | getFlagMw () const |
| A method to retrieve the model flag Mw. | |
| const std::string | getFlagRhoZ () const |
| A method to retrieve the model flag RhoZ. | |
| const Flavour & | getFlavour () const |
| const double | getGF () const |
| A get method to retrieve the Fermi constant \(G_\mu\). | |
| const int | getIterationNo () const |
| const Particle & | getLeptons (const QCD::lepton p) const |
| A get method to retrieve the member object of a lepton. | |
| virtual StandardModelMatching & | getMatching () const |
| A get method to access the member reference of type StandardModelMatching. | |
| virtual const double | getMHl () const |
| A get method to retrieve the Higgs mass \(m_h\). | |
| virtual const double | getmq (const QCD::quark q, const double mu) const |
| The MSbar running quark mass computed at NLO. | |
| const double | getMuw () const |
| A get method to retrieve the matching scale \(\mu_W\) around the weak scale. | |
| const double | getMw () const |
| A get method to access the input value of the mass of the \(W\) boson \(M_W\). | |
| EWSMApproximateFormulae * | getMyApproximateFormulae () const |
| A get method to retrieve the member pointer of type EWSMApproximateFormulae. | |
| EWSMcache * | getMyEWSMcache () const |
| A get method to retrieve the member pointer of type EWSMcache. | |
| LeptonFlavour * | getMyLeptonFlavour () const |
| EWSMOneLoopEW * | getMyOneLoopEW () const |
| A get method to retrieve the member pointer of type EWSMOneLoopEW,. | |
| EWSMThreeLoopEW * | getMyThreeLoopEW () const |
| EWSMThreeLoopEW2QCD * | getMyThreeLoopEW2QCD () const |
| EWSMThreeLoopQCD * | getMyThreeLoopQCD () const |
| EWSMTwoFermionsLEP2 * | getMyTwoFermionsLEP2 () const |
| A get method to retrieve the member pointer of type EWSMTwoFermionsLEP2. | |
| EWSMTwoLoopEW * | getMyTwoLoopEW () const |
| EWSMTwoLoopQCD * | getMyTwoLoopQCD () const |
| const double | getMz () const |
| A get method to access the mass of the \(Z\) boson \(M_Z\). | |
| virtual const double | getPhiBd () const |
| Half the relative phase of the $B_d$ mixing amplitude w.r.t. the Standard Model one. | |
| virtual const double | getPhiBs () const |
| Half the relative phase of the $B_s$ mixing amplitude w.r.t. the Standard Model one. | |
| const gslpp::matrix< gslpp::complex > | getUPMNS () const |
| A get method to retrieve the object of the PMNS matrix. | |
| const gslpp::matrix< gslpp::complex > | getVCKM () const |
| A get method to retrieve the CKM matrix. | |
| const gslpp::matrix< gslpp::complex > & | getYd () const |
| A get method to retrieve the Yukawa matrix of the down-type quarks, \(Y_d\). | |
| const gslpp::matrix< gslpp::complex > & | getYe () const |
| A get method to retrieve the Yukawa matrix of the charged leptons, \(Y_e\). | |
| const gslpp::matrix< gslpp::complex > & | getYn () const |
| A get method to retrieve the Yukawa matrix of the neutrinos, \(Y_\nu\). | |
| const gslpp::matrix< gslpp::complex > & | getYu () const |
| A get method to retrieve the Yukawa matrix of the up-type quarks, \(Y_u\). | |
| virtual const double | gLnuN2 () const |
| The effective neutrino nucleon LH coupling: gLnuN2. | |
| virtual const double | gRnuN2 () const |
| The effective neutrino nucleon RH coupling: gRnuN2. | |
| virtual const double | gVnue () const |
| The effective (muon) neutrino-electron vector coupling: gVnue. | |
| gslpp::complex | I_triangle_1 (const double tau, const double lambda) const |
| Loop function entering in the calculation of the effective \(HZ\gamma\) coupling. | |
| gslpp::complex | I_triangle_2 (const double tau, const double lambda) const |
| Loop function entering in the calculation of the effective \(HZ\gamma\) coupling. | |
| virtual bool | Init (const std::map< std::string, double > &DPars) |
| A method to initialize the model parameters. | |
| virtual bool | InitializeModel () |
| A method to initialize the model. | |
| 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. | |
| const bool | IsFlagWithoutNonUniversalVC () const |
| A method to retrieve the model flag WithoutNonUniversalVC. | |
| const bool | isSMSuccess () const |
| A get method to retrieve the success status of the Standard Model update and matching. | |
| 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 |
| 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, \(M_W^{\mathrm{tree}}\). | |
| 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. | |
| 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. | |
| double | Mzbar () const |
| The \(Z\)-boson mass \(\overline{M}_Z\) in the complex-pole/fixed-width scheme. | |
| virtual bool | PostUpdate () |
| The post-update method for StandardModel. | |
| virtual bool | PreUpdate () |
| The pre-update method for StandardModel. | |
| virtual const double | Qwemoller (const double q2, const double y) const |
| The computation of the electron's weak charge. | |
| virtual const double | Qwn () const |
| The computation of the neutron weak charge: Qwn. | |
| virtual const double | Qwp () const |
| The computation of the proton weak charge: Qwp. | |
| 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 \(\rho^W_{ij}\). | |
| const double | s02 () const |
| The square of the sine of the weak mixing angle \(s_0^2\) defined without weak radiative corrections. | |
| void | setCKM (const CKM &CKMMatrix) |
| A set method to change the CKM matrix. | |
| void | setFlagCacheInStandardModel (bool FlagCacheInStandardModel) |
| A set method to change the model flag CacheInStandardModel of StandardModel. | |
| 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. | |
| void | setRequireCKM (bool requireCKM) |
| A set method to change the value of requireCKM. | |
| void | setSMSuccess (bool success) const |
| A set method to change the success status of the Standard Model update and matching. | |
| void | setYd (const gslpp::matrix< gslpp::complex > &Yd) |
| A set method to set the Yukawa matrix of the down-type quarks, \(Y_d\). | |
| void | setYe (const gslpp::matrix< gslpp::complex > &Ye) |
| A set method to set the Yukawa matrix of the charged leptons, \(Y_e\). | |
| void | setYu (const gslpp::matrix< gslpp::complex > &Yu) |
| A set method to set the Yukawa matrix of the up-type quarks, \(Y_u\). | |
| 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. | |
| 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. | |
| 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. | |
| StandardModel () | |
| The default constructor. | |
| 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 \(s_W^2\). | |
| 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) | |
| 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) | |
| virtual const double | TauLFU_gmuge () const |
| The computation of the LFU ratio \(g_\mu/ g_e \). | |
| virtual const double | TauLFU_gtauge () const |
| The computation of the LFU ratio \(g_\tau/ g_e \). | |
| virtual const double | TauLFU_gtaugmu () const |
| The computation of the LFU ratio \(g_\tau/ g_\mu \). | |
| virtual const double | TauLFU_gtaugmuK () const |
| The computation of the LFU ratio \(\left(g_\tau/ g_\mu\right)_K \). | |
| virtual const double | TauLFU_gtaugmuPi () const |
| The computation of the LFU ratio \(\left(g_\tau/ g_\mu\right)_\pi \). | |
| virtual const double | ThetaLnuN () const |
| The effective neutrino nucleon LH parameter: ThetaLnuN. | |
| virtual const double | ThetaRnuN () const |
| The effective neutrino nucleon RH parameter: ThetaRnuN. | |
| 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. | |
| virtual | ~StandardModel () |
| The default destructor. | |
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(). | |
| void | addParameters (std::vector< std::string > params_i) |
| A method to add parameters that are specific to only one set of observables. | |
| 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(). | |
| 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 \(n_f = 4\). | |
| 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(). | |
| 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 \(\mu\). | |
| 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 \(\Lambda_{\rm QCD}\). | |
| const double | BelowTh (const double mu) const |
| The active flavour threshold below the scale \(\mu\) as defined in QCD::Thresholds(). | |
| const double | Beta0 (const double nf) const |
| The \(\beta_0(n_f)\) coefficient for a certain number of flavours \(n_f\). | |
| const double | Beta1 (const double nf) const |
| The \(\beta_1(n_f)\) coefficient for a certain number of flavours \(n_f\). | |
| const double | Beta2 (const double nf) const |
| The \(\beta_2(n_f)\) coefficient for a certain number of flavours \(n_f\). | |
| const double | Beta3 (const double nf) const |
| The \(\beta_3(n_f)\) coefficient for a certain number of flavours \(n_f\). | |
| void | CacheShift (double cache[][5], int n) const |
| A member used to manage the caching for this class. | |
| void | CacheShift (int cache[][5], int n) const |
| const orders | FullOrder (orders order) const |
| Return the FULLORDER enum corresponding to order. | |
| const double | Gamma0 (const double nf) const |
| The \(\gamma_0\) coefficient used to compute the running of a mass. | |
| const double | Gamma1 (const double nf) const |
| The \(\gamma_1\) coefficient used to compute the running of a mass. | |
| const double | Gamma2 (const double nf) const |
| The \(\gamma_2\) coefficient used to compute the running of a mass. | |
| const double | getAlsM () const |
| A get method to access the value of \(\alpha_s(M_{\alpha_s})\). | |
| const BParameter & | getBBd () 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. | |
| const BParameter & | getBBd_subleading () const |
| For getting the subleading bag parameters \(R_2 - R_3\) in \(\Delta b = 2\) process in the \(B_d\) meson system. | |
| const BParameter & | getBBs () 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. | |
| const BParameter & | getBBs_subleading () const |
| For getting the subleading bag parameters \(R_2 - R_3\) in \(\Delta b = 2\) process in the \(B_s\) meson system. | |
| const BParameter & | getBD () 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. | |
| const BParameter & | getBK () 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. | |
| const BParameter & | getBKd1 () const |
| const BParameter & | getBKd3 () const |
| const double | getCF () const |
| A get method to access the Casimir factor of QCD. | |
| const double | getMAls () const |
| A get method to access the mass scale \(M_{\alpha_s}\) at which the strong coupling constant measurement is provided. | |
| const Meson & | getMesons (const QCD::meson m) const |
| A get method to access a meson as an object of the type Meson. | |
| const double | getMtpole () const |
| A get method to access the pole mass of the top quark. | |
| const double | getMub () const |
| A get method to access the threshold between five- and four-flavour theory in GeV. | |
| const double | getMuc () const |
| A get method to access the threshold between four- and three-flavour theory in GeV. | |
| const double | getMut () const |
| A get method to access the threshold between six- and five-flavour theory in GeV. | |
| const double | getNc () const |
| A get method to access the number of colours \(N_c\). | |
| const double | getOptionalParameter (std::string name) const |
| A method to get parameters that are specific to only one set of observables. | |
| const Particle & | getQuarks (const QCD::quark q) const |
| A get method to access a quark as an object of the type Particle. | |
| 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. | |
| void | initializeBParameter (std::string name_i) const |
| A method to initialize B Parameter and the corresponding meson. | |
| void | initializeMeson (QCD::meson meson_i) const |
| A method to initialize a meson. | |
| bool | isQCDsuccess () const |
| A getter for the QCDsuccess flag. | |
| const double | logLambda (const double nf, orders order) const |
| Computes \(\ln\Lambda_\mathrm{QCD}\) with nf flavours in GeV. | |
| 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. | |
| 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 \(m(m)\). | |
| 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 \(m(m)\). | |
| 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 \(m(m)\). | |
| 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 \(\mu_f\). | |
| 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 \(n_f = 4\). | |
| const double | MS2DRqmass (const double MSbar) const |
| Converts a quark mass from the \(\overline{\mathrm{MS}}\) scheme to the \(\overline{\mathrm{DR}}\) scheme. | |
| 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. | |
| const double | Nf (const double mu) const |
| The number of active flavour at scale \(\mu\). | |
| 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. | |
| const std::string | orderToString (const orders order) const |
| Converts an object of the enum type "orders" to the corresponding string. | |
| QCD () | |
| Constructor. | |
| void | setComputemt (bool computemt) |
| A set method to change the value of computemt. | |
| void | setMtpole (double mtpole_in) |
| A method to set the pole mass of the top quark. | |
| void | setNc (double Nc) |
| A set method to change the number of colours \(N_c\). | |
| 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. | |
| void | setQuarkMass (const quark q, const double mass) |
| A set method to change the mass of a quark. | |
| const double | Thresholds (const int i) const |
| For accessing the active flavour threshold scales. | |
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. | |
| 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. | |
| 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. | |
| Model () | |
| The default constructor. | |
| 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. | |
| void | setModelLinearized (bool linearized=true) |
| void | setModelName (const std::string name) |
| A method to set the name of the model. | |
| 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. | |
| virtual | ~Model () |
| The default destructor. | |
Static Public Attributes | |
| static const std::string | EPSILONpureNPvars [NEPSILONpureNPvars] = {"delEps_1", "delEps_2", "delEps_3", "delEps_b"} |
| A string array containing the labels of the model parameters in NPEpsilons_pureNP. | |
| static const int | NEPSILONpureNPvars = 4 |
| The number of the model parameters in NPEpsilons_pureNP. | |
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. | |
| static const int | NSMvars = 28 |
| The number of the model parameters in StandardModel. | |
| static const int | NumSMParamsForEWPO = 35 |
| The number of the SM parameters that are relevant to the EW precision observables. | |
| static std::string | SMvars [NSMvars] |
| A string array containing the labels of the model parameters in StandardModel. | |
Static Public Attributes inherited from QCD | |
| static const int | NQCDvars = 11 |
| The number of model parameters in QCD. | |
| 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(). | |
Protected Member Functions | |
| virtual void | setParameter (const std::string name, const double &value) |
| A method to set the value of a parameter of the model. | |
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. | |
| virtual void | computeCKM () |
| The method to compute the CKM matrix. | |
| virtual void | computeYukawas () |
| The method to compute the Yukawas matrix. | |
| 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 \(\Delta_{\mathrm{EW/QCD}}\). | |
| 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, \(R_A^q(M_Z^2)\). | |
| 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 \(\Delta r_{\mathrm{rem}}\). | |
| 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 \(\Delta r_{\mathrm{rem}}\). | |
| 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 \(\Delta r_{\mathrm{rem}}\). | |
| double | RVh () const |
| The singlet vector corrections to the hadronic \(Z\)-boson width, denoted as \(R_V^h\). | |
| 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, \(R_V^q(M_Z^2)\). | |
| 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. | |
| 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 \(\tau_b\). | |
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. | |
Protected Attributes | |
| double | deltaEps_1 |
| The new physics contribution to \(\varepsilon_1\). | |
| double | deltaEps_2 |
| The new physics contribution to \(\varepsilon_2\). | |
| double | deltaEps_3 |
| The new physics contribution to \(\varepsilon_3\). | |
| double | deltaEps_b |
| The new physics contribution to \(\varepsilon_b\). | |
Protected Attributes inherited from StandardModel | |
| double | A |
| The CKM parameter \(A\) in the Wolfenstein parameterization. | |
| double | ale |
| The fine-structure constant \(\alpha\). | |
| double | alpha21 |
| double | alpha31 |
| double | AlsMz |
| The strong coupling constant at the Z-boson mass, \(\alpha_s(M_Z)\). | |
| 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) | |
| 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. | |
| double | delGammaWlv |
| The theoretical uncertainty in \(\Gamma_W_{l\nu}\), denoted as \(\delta\,\Gamma_W_{l\nu}\). | |
| double | delGammaWqq |
| The theoretical uncertainty in \(\Gamma_W_{qq}\), denoted as \(\delta\,\Gamma_W_{qq}\). | |
| double | delGammaZ |
| The theoretical uncertainty in \(\Gamma_Z\), denoted as \(\delta\,\Gamma_Z\), in GeV. | |
| double | delMw |
| The theoretical uncertainty in \(M_W\), denoted as \(\delta\,M_W\), in GeV. | |
| double | delR0b |
| The theoretical uncertainty in \(R_b^0\), denoted as \(\delta\,R_b^0\). | |
| double | delR0c |
| The theoretical uncertainty in \(R_c^0\), denoted as \(\delta\,R_c^0\). | |
| double | delR0l |
| The theoretical uncertainty in \(R_l^0\), denoted as \(\delta\,R_l^0\). | |
| double | delsigma0H |
| The theoretical uncertainty in \(\sigma_{Hadron}^0\), denoted as \(\delta\,\sigma_{Hadron}^0\) in nb. | |
| double | delSin2th_b |
| The theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{b}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{b}\). | |
| double | delSin2th_l |
| The theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{\rm lept}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{\rm lept}\). | |
| double | delSin2th_q |
| The theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{q\not = b,t}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{q\not = b,t}\). | |
| double | delta |
| double | etab |
| The CKM parameter \(\bar{\eta}\) in the Wolfenstein parameterization. | |
| bool | flag_order [orders_EW_size] |
| An array of internal flags controlling the inclusions of higher-order corrections. | |
| bool | FlagFixMuwMut |
| A boolean for the model flag FixMuwMut. | |
| bool | flagLEP2 [NUMofLEP2RCs] |
| double | gamma |
| \(\gamma \) used as an input for FlagWolfenstein = FALSE | |
| double | GF |
| The Fermi constant \(G_\mu\) in \({\rm GeV}^{-2}\). | |
| double | lambda |
| The CKM parameter \(\lambda\) in the Wolfenstein parameterization. | |
| Particle | leptons [6] |
| An array of Particle objects for the leptons. | |
| double | mHl |
| The Higgs mass \(m_h\) in GeV. | |
| double | muw |
| A matching scale \(\mu_W\) around the weak scale in GeV. | |
| double | Mw_inp |
| The mass of the \(W\) boson in GeV used as input for FlagMWinput = TRUE. | |
| CKM | myCKM |
| An object of type CKM. | |
| PMNS | myPMNS |
| double | Mz |
| The mass of the \(Z\) boson in GeV. | |
| bool | requireCKM |
| An internal flag to control whether the CKM matrix has to be recomputed. | |
| bool | requireYe |
| An internal flag to control whether the charged-lepton Yukawa matrix has to be recomputed. | |
| bool | requireYn |
| An internal flag to control whether the neutrino Yukawa matrix has to be recomputed. | |
| double | rhob |
| The CKM parameter \(\bar{\rho}\) in the Wolfenstein parameterization. | |
| double | s12 |
| double | s13 |
| double | s23 |
| Flavour | SMFlavour |
| An object of type Flavour. | |
| Matching< StandardModelMatching, StandardModel > | SMM |
| An object of type Matching. | |
| double | Vcb |
| \(\vert V_{cb} \vert \) used as an input for FlagWolfenstein = FALSE | |
| double | Vub |
| \(\vert V_{ub} \vert \) used as an input for FlagWolfenstein = FALSE | |
| double | Vud |
| \(\vert V_{ud} \vert \) used as an input for FlagWolfenstein = FALSE and FlagUseVud = TRUE | |
| double | Vus |
| \(\vert V_{us} \vert \) used as an input for FlagWolfenstein = FALSE | |
| gslpp::matrix< gslpp::complex > | Yd |
| The Yukawa matrix of the down-type quarks. | |
| gslpp::matrix< gslpp::complex > | Ye |
| The Yukawa matrix of the charged leptons. | |
| gslpp::matrix< gslpp::complex > | Yn |
| The Yukawa matrix of the neutrinos. | |
| gslpp::matrix< gslpp::complex > | Yu |
| The Yukawa matrix of the up-type quarks. | |
Protected Attributes inherited from QCD | |
| double | AlsM |
| The strong coupling constant at the mass scale MAls, \(\alpha_s(M_{\alpha_s})\). | |
| double | CA |
| double | CF |
| bool | computemt |
| Switch for computing the \(\overline{\mathrm{MS}}\) mass of the top quark. | |
| 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. | |
| bool | FlagMtPole |
| A flag to determine whether the pole mass of the top quark is used as input. | |
| double | MAls |
| The mass scale in GeV at which the strong coupling measurement is provided. | |
| double | mtpole |
| The pole mass of the top quark. | |
| double | mub |
| The threshold between five- and four-flavour theory in GeV. | |
| double | muc |
| The threshold between four- and three-flavour theory in GeV. | |
| double | mut |
| The threshold between six- and five-flavour theory in GeV. | |
| double | NA |
| double | Nc |
| The number of colours. | |
| bool | QCDsuccess =true |
| Particle | quarks [6] |
| The vector of all SM quarks. | |
| bool | requireYd |
| Switch for generating the Yukawa couplings to the down-type quarks. | |
| bool | requireYu |
| Switch for generating the Yukawa couplings to the up-type quarks. | |
| 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. | |
| std::map< std::string, std::reference_wrapper< const double > > | ModelParamMap |
| bool | UpdateError = false |
| A boolean set to false if update is successful. | |
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... | |
| NPEpsilons_pureNP::NPEpsilons_pureNP | ( | ) |
The default constructor.
Definition at line 14 of file NPEpsilons_pureNP.cpp.
|
virtual |
A method to check if all the mandatory parameters for the model have been provided in model initialization.
| [in] | DPars | a map of the parameters that are being updated in the Monte Carlo run (including parameters that are varied and those that are held constant) |
Reimplemented from StandardModel.
Definition at line 37 of file NPEpsilons_pureNP.cpp.
|
virtual |
New physics contribution to the neutral-current axial-vector coupling \(g_A^f\).
\[ \delta g_A^f = \frac{I_3^f}{2}\delta\,\varepsilon_1 \]
for \(f\neq b\), and
\[ \delta g_A^b = \frac{I_3^b}{2}\big( \delta\,\varepsilon_1 + 2\,\delta\,\varepsilon_b \big) \]
for \(f=b\).
| [in] | f | a lepton or quark |
Reimplemented from NPbase.
Definition at line 112 of file NPEpsilons_pureNP.cpp.
|
virtual |
New physics contribution to the neutral-current vector coupling \(g_V^f\).
\[ \delta g_V^f = \Big( g_{V,\mathrm{SM}}^f - g_{A,\mathrm{SM}}^f \Big) \frac{\delta\,\varepsilon_3-c_0^2\,\delta\,\varepsilon_1}{c_0^2 - s_0^2} + \frac{g_{V,\mathrm{SM}}^f}{2} \delta\,\varepsilon_1 \]
for \(f\neq b\), and
\[ \delta g_V^b = \Big(g_{V,\mathrm{SM}}^b - g_{A,\mathrm{SM}}^b \Big) \bigg( \frac{\delta\,\varepsilon_3-c_0^2\,\delta\,\varepsilon_1}{c_0^2 - s_0^2} - \delta\,\varepsilon_b \bigg) + \frac{g_{V,\mathrm{SM}}^b}{2} \big(\delta\,\varepsilon_1 + 2\delta\,\varepsilon_b\big) \]
for \(f=b\).
| [in] | f | a lepton or quark |
Reimplemented from NPbase.
Definition at line 93 of file NPEpsilons_pureNP.cpp.
|
virtual |
The parameter \(\varepsilon_1\).
Reimplemented from StandardModel.
Definition at line 52 of file NPEpsilons_pureNP.cpp.
|
virtual |
The parameter \(\varepsilon_2\).
Reimplemented from StandardModel.
Definition at line 57 of file NPEpsilons_pureNP.cpp.
|
virtual |
The parameter \(\varepsilon_3\).
Reimplemented from StandardModel.
Definition at line 62 of file NPEpsilons_pureNP.cpp.
|
virtual |
The parameter \(\varepsilon_b\).
Reimplemented from StandardModel.
Definition at line 67 of file NPEpsilons_pureNP.cpp.
|
virtual |
The total width of the \(W\) boson, \(\Gamma_W\).
Reimplemented from NPbase.
Definition at line 85 of file NPEpsilons_pureNP.cpp.
|
virtual |
The mass of the \(W\) boson, \(M_W\).
\[ M_W = M_{W,\mathrm{SM}} \left\{ 1 - \frac{1}{2(c_{W,\mathrm{SM}}^2 - s_{W,\mathrm{SM}}^2)} \big[ - c_0^2\, \delta\varepsilon_1 + (c_0^2-s_0^2)\, \delta\varepsilon_2 + 2s_0^2\, \delta\varepsilon_3 \big] \right\}. \]
Reimplemented from NPbase.
Definition at line 75 of file NPEpsilons_pureNP.cpp.
|
protectedvirtual |
A method to set the value of a parameter of the model.
| [in] | name | name of a model parameter |
| [in] | value | the value to be assigned to the parameter specified by name |
Reimplemented from StandardModel.
Definition at line 23 of file NPEpsilons_pureNP.cpp.
|
protected |
The new physics contribution to \(\varepsilon_1\).
Definition at line 229 of file NPEpsilons_pureNP.h.
|
protected |
The new physics contribution to \(\varepsilon_2\).
Definition at line 230 of file NPEpsilons_pureNP.h.
|
protected |
The new physics contribution to \(\varepsilon_3\).
Definition at line 231 of file NPEpsilons_pureNP.h.
|
protected |
The new physics contribution to \(\varepsilon_b\).
Definition at line 232 of file NPEpsilons_pureNP.h.
|
static |
A string array containing the labels of the model parameters in NPEpsilons_pureNP.
Definition at line 11 of file NPEpsilons_pureNP.h.
|
static |
The number of the model parameters in NPEpsilons_pureNP.
Definition at line 103 of file NPEpsilons_pureNP.h.