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SUSY Class Reference

A base class for SUSY models. More...

#include <SUSY.h>

+ Inheritance diagram for SUSY:

Detailed Description

A base class for SUSY models.

Author
HEPfit Collaboration


Definition at line 33 of file SUSY.h.

Public Member Functions

virtual bool CheckParameters (const std::map< std::string, double > &DPars)
 
const double getCosb () const
 Gets \(\cos\beta\). More...
 
gslpp::complex getM1 () const
 Gets the bino mass. More...
 
gslpp::complex getM2 () const
 Gets the wino mass. More...
 
const double getM3 () const
 Gets the gluino mass. More...
 
virtual SUSYMatchinggetMatching () const
 
gslpp::vector< double > getMch () const
 Gets the chargino masses. More...
 
const double getMGl () const
 Gets the gluino mass obtained from FHGetPara(). More...
 
const double getMHa () const
 Gets the pseudo-scalar Higgs mass. More...
 
const double getMHh () const
 Gets the heavy Higgs mass. More...
 
virtual const double getMHl () const
 Gets the light Higgs mass. More...
 
const double getMHp () const
 Gets the charged Higgs mass. More...
 
const double getMHptree () const
 Gets the charged-Higgs mass at tree-level. More...
 
gslpp::vector< double > getMneu () const
 Gets the neutralino masses. More...
 
gslpp::vector< double > getMsd2 () const
 Gets the down-type squark mass squared. More...
 
gslpp::matrix< gslpp::complex > getMsDhat2 () const
 
gslpp::vector< double > getMsdresum2 () const
 Gets the down-type squark mass squared with the \(\Delta_b\) corrections in the off-diagonal entries. More...
 
gslpp::vector< double > getMse2 () const
 Gets the charged slepton mass squared. More...
 
gslpp::matrix< gslpp::complex > getMsEhat2 () const
 
gslpp::matrix< gslpp::complex > getMsLhat2 () const
 
gslpp::vector< double > getMsn2 () const
 Gets the sneutrino mass squared. More...
 
gslpp::matrix< gslpp::complex > getMsNhat2 () const
 
gslpp::matrix< gslpp::complex > getMsQhat2 () const
 
gslpp::vector< double > getMsu2 () const
 Gets the up-type squark mass squared. More...
 
gslpp::matrix< gslpp::complex > getMsUhat2 () const
 
gslpp::complex getMuH () const
 Gets the \(\mu\) parameter in the superpotential. More...
 
FeynHiggsWrappergetMyFH () const
 
gslpp::matrix< gslpp::complex > getN () const
 Gets the rotation matrix for neutralinos. More...
 
const double getQ_SUSY () const
 Gets the scale of the input parameters. More...
 
gslpp::matrix< gslpp::complex > getRd () const
 Gets the rotation matrix for down-type squarks. More...
 
gslpp::matrix< gslpp::complex > getRdresum () const
 Gets the rotation matrix for down-type squarks with the \(\Delta_b\) corrections in the off-diagonal entries. More...
 
gslpp::matrix< gslpp::complex > getRl () const
 Gets the rotation matrix for charged sleptons. More...
 
gslpp::matrix< gslpp::complex > getRn () const
 Gets the rotation matrix for sneutrinos. More...
 
gslpp::matrix< gslpp::complex > getRu () const
 Gets the rotation matrix for up-type squarks. More...
 
gslpp::complex getSaeff () const
 Gets the sine of the effective mixing angle for the CP-even neutral Higgs bosons. More...
 
const double getSinb () const
 Gets \(\sin\beta\). More...
 
const double getTanb () const
 Gets \(\tan\beta\). More...
 
gslpp::matrix< gslpp::complex > getTDhat () const
 Gets the trilinear-coupling matrix for down-type squarks. More...
 
gslpp::matrix< gslpp::complex > getTEhat () const
 Gets the trilinear-coupling matrix for charged sleptons. More...
 
gslpp::matrix< gslpp::complex > getTNhat () const
 Gets the trilinear-coupling matrix for sneutrinos. More...
 
gslpp::matrix< gslpp::complex > getTUhat () const
 Gets the trilinear-coupling matrix for up-type squarks. More...
 
gslpp::matrix< gslpp::complex > getU () const
 Gets the rotation matrix for negative charginos. More...
 
gslpp::matrix< gslpp::complex > getV () const
 Gets the rotation matrix for positive charginos. More...
 
virtual bool Init (const std::map< std::string, double > &DPars)
 
virtual bool InitializeModel ()
 
bool IsFlag_ch () const
 
bool IsFlag_FH () const
 
bool IsFlag_g () const
 
bool IsFlag_h () const
 
bool IsFlag_ne () const
 
double Ml_Q (const lepton l) const
 
double Mq_Q (const quark q) const
 
virtual const double Mw () const
 The W boson mass. More...
 
double Mw_dRho () const
 The W boson mass in the \(\Delta\rho\) approximation. More...
 
virtual bool PostUpdate ()
 
virtual bool PreUpdate ()
 
virtual bool setFlag (const std::string, const bool)
 
 SUSY ()
 A SUSY constructor. More...
 
virtual bool Update (const std::map< std::string, double > &DPars)
 
double v1 () const
 
double v2 () const
 
 ~SUSY ()
 A SUSY destructor. More...
 
- Public Member Functions inherited from StandardModel
virtual const double A_f (const Particle f) const
 The left-right asymmetry in \(e^+e^-\to Z\to \ell \bar{\ell}\) at the \(Z\)-pole, \(\mathcal{A}_\ell\). More...
 
virtual const double AFB (const Particle f) const
 
gslpp::complex AH_f (const double tau) const
 Fermionic loop function entering in the calculation of the effective \(Hgg\) and \(H\gamma\gamma\) couplings. More...
 
gslpp::complex AH_W (const double tau) const
 W loop function entering in the calculation of the effective \(H\gamma\gamma\) coupling. More...
 
gslpp::complex AHZga_f (const double tau, const double lambda) const
 Fermionic loop function entering in the calculation of the effective \(HZ\gamma\) coupling. More...
 
gslpp::complex AHZga_W (const double tau, const double lambda) const
 W loop function entering in the calculation of the effective \(HZ\gamma\) coupling. More...
 
const double Ale (double mu, orders order, bool Nf_thr=true) const
 The running electromagnetic coupling \(\alpha_e(\mu)\) in the \(\overline{MS}\) scheme. More...
 
const double ale_OS (const double mu, orders order=FULLNLO) const
 The running electromagnetic coupling \(\alpha(\mu)\) in the on-shell scheme. More...
 
virtual const double alphaMz () const
 The electromagnetic coupling at the \(Z\)-mass scale, \(\alpha(M_Z^2)=\alpha/(1-\Delta\alpha(M_Z^2))\). More...
 
virtual const double alrmoller (const double q2, const double y) const
 The computation of the parity violating asymmetry in Moller scattering. More...
 
const double Als (const double mu, const int Nf_in, const orders order=FULLNLO) const
 Computes the running strong coupling \(\alpha_s(\mu)\) with \(N_f\) active flavours in the \(\overline{\mathrm{MS}}\) scheme. In the cases of LO, NLO and FULLNLO, the coupling is computed with AlsWithInit(). On the other hand, in the cases of NNLO and FULLNNLO, the coupling is computed with AlsWithLambda(). More...
 
const double Als (const double mu, const orders order, const bool Nf_thr, const bool qed_flag) const
 The running QCD coupling \(\alpha(\mu)\) in the \(\overline{MS}\) scheme including QED corrections. More...
 
const double Als (const double mu, const orders order=FULLNLO, const bool Nf_thr=true) const
 
const double Alstilde5 (const double mu) const
 The value of \(\frac{\alpha_s^{\mathrm{FULLNLO}}}{4\pi}\) at any scale \(\mu\) with the number of flavours \(n_f = 4\) and full EW corrections. More...
 
virtual const double amuon () const
 The computation of the anomalous magnetic moment of the muon \(a_\mu=(g_\mu-2)/2\). More...
 
const double Beta_e (int nm, unsigned int nf) const
 QED beta function coefficients - eq. (36) hep-ph/0512066. More...
 
const double Beta_s (int nm, unsigned int nf) const
 QCD beta function coefficients including QED corrections - eq. (36) hep-ph/0512066. More...
 
virtual const double BrHtobb () const
 The Br \((H\to b \bar{b})\) in the Standard Model. More...
 
virtual const double BrHtocc () const
 The Br \((H\to c \bar{c})\) in the Standard Model. More...
 
virtual const double BrHtogaga () const
 The Br \((H\to \gamma \gamma)\) in the Standard Model. More...
 
virtual const double BrHtogg () const
 The Br \(\(H\to gg)\) in the Standard Model. More...
 
virtual const double BrHtomumu () const
 The Br \((H\to \mu^+ \mu^-)\) in the Standard Model. More...
 
virtual const double BrHtoss () const
 The Br \((H\to s \bar{s})\) in the Standard Model. More...
 
virtual const double BrHtotautau () const
 The Br \((H\to \tau^+ \tau^-)\) in the Standard Model. More...
 
virtual const double BrHtoWWstar () const
 The Br \((H\to W W^*)\) in the Standard Model. More...
 
virtual const double BrHtoZga () const
 The Br \((H\to Z \gamma)\) in the Standard Model. More...
 
virtual const double BrHtoZZstar () const
 The Br \((H\to Z Z^*)\) in the Standard Model. More...
 
virtual const double BrW (const Particle fi, const Particle fj) const
 The branching ratio of the \(W\) boson decaying into a SM fermion pair, \(Br(W\to f_i f_j)\). More...
 
const double c02 () const
 The square of the cosine of the weak mixing angle \(c_0^2\) defined without weak radiative corrections. More...
 
virtual bool CheckFlags () const
 A method to check the sanity of the set of model flags. More...
 
bool checkSMparamsForEWPO ()
 A method to check whether the parameters relevant to the EWPO are updated. More...
 
const double computeBrHto4f () const
 The Br \((H\to 4f)\) in the Standard Model. More...
 
const double computeBrHto4l2 () const
 The Br \((H\to 4l)\) \(l=e,\mu\) in the Standard Model. More...
 
const double computeBrHto4l3 () const
 The Br \((H\to 4l)\) \(l=e,\mu,\tau\) in the Standard Model. More...
 
const double computeBrHto4q () const
 The Br \((H\to 4q)\) in the Standard Model. More...
 
const double computeBrHto4v () const
 The Br \((H\to 4\nu)\) in the Standard Model. More...
 
const double computeBrHtobb () const
 The Br \((H\to bb)\) in the Standard Model. More...
 
const double computeBrHtocc () const
 The Br \((H\to cc)\) in the Standard Model. More...
 
const double computeBrHtoevmuv () const
 The Br \((H\to e \nu \mu \nu)\) in the Standard Model. More...
 
const double computeBrHtogaga () const
 The Br \((H\to\gamma\gamma)\) in the Standard Model. More...
 
const double computeBrHtogg () const
 The Br \((H\to gg)\) in the Standard Model. More...
 
const double computeBrHtollvv2 () const
 The Br \((H\to l^+ l^- \nu \nu)\) \(l=e,\mu\) in the Standard Model. More...
 
const double computeBrHtollvv3 () const
 The Br \((H\to l^+ l^- \nu \nu)\) \(l=e,\mu,\tau\) in the Standard Model. More...
 
const double computeBrHtomumu () const
 The Br \((H\to \mu\mu)\) in the Standard Model. More...
 
const double computeBrHtoss () const
 The Br \((H\to ss)\) in the Standard Model. More...
 
const double computeBrHtotautau () const
 The Br \((H\to \tau\tau)\) in the Standard Model. More...
 
const double computeBrHtoWW () const
 The Br \((H\to WW)\) in the Standard Model. More...
 
const double computeBrHtoZga () const
 The Br \((H\to Z\gamma)\) in the Standard Model. More...
 
const double computeBrHtoZZ () const
 The Br \((H\to ZZ)\) in the Standard Model. More...
 
void ComputeDeltaR_rem (const double Mw_i, double DeltaR_rem[orders_EW_size]) const
 A method to collect \(\Delta r_{\mathrm{rem}}\) computed via subclasses. More...
 
void ComputeDeltaRho (const double Mw_i, double DeltaRho[orders_EW_size]) const
 A method to collect \(\Delta\rho\) computed via subclasses. More...
 
const double computeGammaHgaga_tt () const
 The top loop contribution to \(H\to\gamma\gamma\) in the Standard Model. More...
 
const double computeGammaHgaga_tW () const
 The mixed \(t-W\) loop contribution to \(H\to\gamma\gamma\) in the Standard Model. More...
 
const double computeGammaHgaga_WW () const
 The \(W\) loop contribution to \(H\to\gamma\gamma\) in the Standard Model. More...
 
const double computeGammaHgg_bb () const
 The bottom loop contribution to \(H\to gg\) in the Standard Model. More...
 
const double computeGammaHgg_tb () const
 The top-bottom interference contribution to \(H\to gg\) in the Standard Model. More...
 
const double computeGammaHgg_tt () const
 The top loop contribution to \(H\to gg\) in the Standard Model. More...
 
const double computeGammaHTotal () const
 The Higgs total width in the Standard Model. More...
 
const double computeGammaHZga_tt () const
 The top loop contribution to \(H\to Z\gamma\) in the Standard Model. More...
 
const double computeGammaHZga_tW () const
 The mixed \(t-W\) loop contribution to \(H\to Z\gamma\) in the Standard Model. More...
 
const double computeGammaHZga_WW () const
 The \(W\) loop contribution to \(H\to Z\gamma\) in the Standard Model. Currently it returns the value of tab 41 in ref. [Heinemeyer:2013tqa]. More...
 
const double computeSigmabbH (const double sqrt_s) const
 The bbH production cross section in the Standard Model. More...
 
const double computeSigmaggH (const double sqrt_s) const
 The ggH cross section in the Standard Model. More...
 
const double computeSigmaggH_bb (const double sqrt_s) const
 The square of the bottom-quark contribution to the ggH cross section in the Standard Model. More...
 
const double computeSigmaggH_tb (const double sqrt_s) const
 The top-bottom interference contribution to the ggH cross section in the Standard Model. More...
 
const double computeSigmaggH_tt (const double sqrt_s) const
 The square of the top-quark contribution to the ggH cross section in the Standard Model. More...
 
const double computeSigmatHq (const double sqrt_s) const
 The tHq production cross section in the Standard Model. More...
 
const double computeSigmattH (const double sqrt_s) const
 The ttH production cross section in the Standard Model. More...
 
const double computeSigmaVBF (const double sqrt_s) const
 The VBF cross section in the Standard Model. More...
 
const double computeSigmaWF (const double sqrt_s) const
 The W fusion contribution \(\sigma_{WF}\) to higgs-production cross section in the Standard Model. More...
 
const double computeSigmaWH (const double sqrt_s) const
 The WH production cross section in the Standard Model. More...
 
const double computeSigmaZF (const double sqrt_s) const
 The Z fusion contribution \(\sigma_{ZF}\) to higgs-production cross section in the Standard Model. More...
 
const double computeSigmaZH (const double sqrt_s) const
 The ZH production cross section in the Standard Model. More...
 
const double computeSigmaZWF (const double sqrt_s) const
 The Z W interference fusion contribution \(\sigma_{ZWF}\) to higgs-production cross section in the Standard Model. More...
 
virtual const double cW2 () const
 
virtual const double cW2 (const double Mw_i) const
 The square of the cosine of the weak mixing angle in the on-shell scheme, denoted as \(c_W^2\). More...
 
virtual const double Dalpha5hMz () const
 The 5-quark contribution to the running of the em constant to the \(Z\) pole. \(\Delta\alpha_{had}^{(5)}(M_Z)\). More...
 
const double DeltaAlpha () const
 The total corrections to the electromagnetic coupling \(\alpha\) at the \(Z\)-mass scale, denoted as \(\Delta\alpha(M_Z^2)\). More...
 
const double DeltaAlphaL5q () const
 The sum of the leptonic and the five-flavour hadronic corrections to the electromagnetic coupling \(\alpha\) at the \(Z\)-mass scale, denoted as \(\Delta\alpha^{\ell+5q}(M_Z^2)\). More...
 
const double DeltaAlphaLepton (const double s) const
 Leptonic contribution to the electromagnetic coupling \(\alpha\), denoted as \(\Delta\alpha_{\mathrm{lept}}(s)\). More...
 
const double DeltaAlphaTop (const double s) const
 Top-quark contribution to the electromagnetic coupling \(\alpha\), denoted as \(\Delta\alpha_{\mathrm{top}}(s)\). More...
 
virtual const gslpp::complex deltaKappaZ_f (const Particle f) const
 Flavour non-universal vertex corrections to \(\kappa_Z^l\), denoted by \(\Delta\kappa_Z^l\). More...
 
virtual const double DeltaR () const
 The SM prediction for \(\Delta r\) derived from that for the \(W\) boson mass. More...
 
virtual const double DeltaRbar () const
 The SM prediction for \(\Delta \overline{r}\) derived from that for the \(W\)-boson mass. More...
 
virtual const gslpp::complex deltaRhoZ_f (const Particle f) const
 Flavour non-universal vertex corrections to \(\rho_Z^l\), denoted by \(\Delta\rho_Z^l\). More...
 
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
 
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
 
virtual const double epsilon1 () const
 The SM contribution to the epsilon parameter \(\varepsilon_1\). More...
 
virtual const double epsilon2 () const
 The SM contribution to the epsilon parameter \(\varepsilon_2\). More...
 
virtual const double epsilon3 () const
 The SM contribution to the epsilon parameter \(\varepsilon_3\). More...
 
virtual const double epsilonb () const
 The SM contribution to the epsilon parameter \(\varepsilon_b\). More...
 
gslpp::complex f_triangle (const double tau) const
 Loop function entering in the calculation of the effective \(Hgg\) and \(H\gamma\gamma\) couplings. More...
 
gslpp::complex g_triangle (const double tau) const
 Loop function entering in the calculation of the effective \(HZ\gamma\) coupling. More...
 
virtual const gslpp::complex gA_f (const Particle f) const
 The effective leptonic neutral-current axial-vector coupling \(g_A^l\) in the SM. More...
 
virtual const double Gamma_had () const
 The hadronic decay width of the \(Z\) boson, \(\Gamma_{h}\). More...
 
virtual const double Gamma_inv () const
 The invisible partial decay width of the \(Z\) boson, \(\Gamma_{\mathrm{inv}}\). More...
 
virtual const double Gamma_muon () const
 The computation of the muon decay. More...
 
virtual const double Gamma_tau_l_nunu (const Particle l) const
 The computation of the leptonic tau decays. More...
 
virtual const double Gamma_Z () const
 The total decay width of the \(Z\) boson, \(\Gamma_Z\). More...
 
virtual const double GammaHtobb () const
 The \(\Gamma(H\to b \bar{b})\) in the Standard Model. More...
 
virtual const double GammaHtocc () const
 The \(\Gamma(H\to c \bar{c})\) in the Standard Model. More...
 
virtual const double GammaHtogaga () const
 The \(\Gamma(H\to \gamma \gamma)\) in the Standard Model. More...
 
virtual const double GammaHtogg () const
 The \(\Gamma(H\to gg)\) in the Standard Model. More...
 
virtual const double GammaHtomumu () const
 The \(\Gamma(H\to \mu^+ \mu^-)\) in the Standard Model. More...
 
virtual const double GammaHtoss () const
 The \(\Gamma(H\to s \bar{s})\) in the Standard Model. More...
 
virtual const double GammaHTot () const
 The total Higgs width \(\Gamma(H)\) in the Standard Model. More...
 
virtual const double GammaHtotautau () const
 The \(\Gamma(H\to \tau^+ \tau^-)\) in the Standard Model. More...
 
virtual const double GammaHtoWWstar () const
 The \(\Gamma(H\to W W^*)\) in the Standard Model. More...
 
virtual const double GammaHtoZga () const
 The \(\Gamma(H\to Z \gamma)\) in the Standard Model. More...
 
virtual const double GammaHtoZZstar () const
 The \(\Gamma(H\to Z Z^*)\) in the Standard Model. More...
 
virtual const double GammaW () const
 The total width of the \(W\) boson, \(\Gamma_W\). More...
 
virtual const double GammaW (const Particle fi, const Particle fj) const
 A partial decay width of the \(W\) boson decay into a SM fermion pair. More...
 
virtual const double GammaZ (const Particle f) const
 The \(Z\to \ell\bar{\ell}\) partial decay width, \(\Gamma_\ell\). More...
 
virtual const double gAnue () const
 The effective (muon) neutrino-electron axial-vector coupling: gAnue. More...
 
const double getAle () const
 A get method to retrieve the fine-structure constant \(\alpha\). More...
 
const double getAlsMz () const
 A get method to access the value of \(\alpha_s(M_Z)\). More...
 
virtual const double getCBd () const
 The ratio of the absolute value of the $B_d$ mixing amplitude over the Standard Model value. More...
 
virtual const double getCBs () const
 The ratio of the absolute value of the $B_s$ mixing amplitude over the Standard Model value. More...
 
virtual const double getCCC1 () const
 A virtual implementation for the RealWeakEFTCC class. More...
 
virtual const double getCCC2 () const
 A virtual implementation for the RealWeakEFTCC class. More...
 
virtual const double getCCC3 () const
 A virtual implementation for the RealWeakEFTCC class. More...
 
virtual const double getCCC4 () const
 A virtual implementation for the RealWeakEFTCC class. More...
 
virtual const double getCCC5 () const
 A virtual implementation for the RealWeakEFTCC class. More...
 
virtual const double getCDMK () const
 The ratio of the real part of the $K$ mixing amplitude over the Standard Model value. More...
 
virtual const double getCepsK () const
 The ratio of the imaginary part of the $K$ mixing amplitude over the Standard Model value. More...
 
const CKMgetCKM () const
 A get method to retrieve the member object of type CKM. More...
 
const double getDAle5Mz () const
 A get method to retrieve the five-flavour hadronic contribution to the electromagnetic coupling, \(\Delta\alpha_{\mathrm{had}}^{(5)}(M_Z^2)\). More...
 
const double getDelGammaZ () const
 A get method to retrieve the theoretical uncertainty in \(\Gamma_Z\), denoted as \(\delta\,\Gamma_Z\). More...
 
const double getDelMw () const
 A get method to retrieve the theoretical uncertainty in \(M_W\), denoted as \(\delta\,M_W\). More...
 
const double getDelR0b () const
 A get method to retrieve the theoretical uncertainty in \(R_b^0\), denoted as \(\delta\,R_b^0\). More...
 
const double getDelR0c () const
 A get method to retrieve the theoretical uncertainty in \(R_c^0\), denoted as \(\delta\,R_c^0\). More...
 
const double getDelR0l () const
 A get method to retrieve the theoretical uncertainty in \(R_l^0\), denoted as \(\delta\,R_l^0\). More...
 
const double getDelSigma0H () const
 A get method to retrieve the theoretical uncertainty in \(\sigma_{Hadron}^0\), denoted as \(\delta\,\sigma_{Hadron}^0\). More...
 
const double getDelSin2th_b () const
 A get method to retrieve the theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{b}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{b}\). More...
 
const double getDelSin2th_l () const
 A get method to retrieve the theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{\rm lept}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{\rm lept}\). More...
 
const double getDelSin2th_q () const
 A get method to retrieve the theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{q\not = b,t}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{q\not = b,t}\). More...
 
const std::string getFlagKappaZ () const
 A method to retrieve the model flag KappaZ. More...
 
const std::string getFlagMw () const
 A method to retrieve the model flag Mw. More...
 
const std::string getFlagRhoZ () const
 A method to retrieve the model flag RhoZ. More...
 
const FlavourgetFlavour () const
 
const double getGF () const
 A get method to retrieve the Fermi constant \(G_\mu\). More...
 
const int getIterationNo () const
 
const ParticlegetLeptons (const QCD::lepton p) const
 A get method to retrieve the member object of a lepton. More...
 
virtual const double getmq (const QCD::quark q, const double mu) const
 The MSbar running quark mass computed at NLO. More...
 
const double getMuw () const
 A get method to retrieve the matching scale \(\mu_W\) around the weak scale. More...
 
const double getMw () const
 A get method to access the input value of the mass of the \(W\) boson \(M_W\). More...
 
EWSMApproximateFormulaegetMyApproximateFormulae () const
 A get method to retrieve the member pointer of type EWSMApproximateFormulae. More...
 
EWSMcachegetMyEWSMcache () const
 A get method to retrieve the member pointer of type EWSMcache. More...
 
LeptonFlavourgetMyLeptonFlavour () const
 
EWSMOneLoopEWgetMyOneLoopEW () const
 A get method to retrieve the member pointer of type EWSMOneLoopEW,. More...
 
EWSMThreeLoopEWgetMyThreeLoopEW () const
 
EWSMThreeLoopEW2QCDgetMyThreeLoopEW2QCD () const
 
EWSMThreeLoopQCDgetMyThreeLoopQCD () const
 
EWSMTwoFermionsLEP2getMyTwoFermionsLEP2 () const
 A get method to retrieve the member pointer of type EWSMTwoFermionsLEP2. More...
 
EWSMTwoLoopEWgetMyTwoLoopEW () const
 
EWSMTwoLoopQCDgetMyTwoLoopQCD () const
 
const double getMz () const
 A get method to access the mass of the \(Z\) boson \(M_Z\). More...
 
virtual const double getPhiBd () const
 Half the relative phase of the $B_d$ mixing amplitude w.r.t. the Standard Model one. More...
 
virtual const double getPhiBs () const
 Half the relative phase of the $B_s$ mixing amplitude w.r.t. the Standard Model one. More...
 
virtual const StandardModelgetTrueSM () const
 
const gslpp::matrix< gslpp::complex > getUPMNS () const
 A get method to retrieve the object of the PMNS matrix. More...
 
const gslpp::matrix< gslpp::complex > getVCKM () const
 A get method to retrieve the CKM matrix. More...
 
const gslpp::matrix< gslpp::complex > & getYd () const
 A get method to retrieve the Yukawa matrix of the down-type quarks, \(Y_d\). More...
 
const gslpp::matrix< gslpp::complex > & getYe () const
 A get method to retrieve the Yukawa matrix of the charged leptons, \(Y_e\). More...
 
const gslpp::matrix< gslpp::complex > & getYn () const
 A get method to retrieve the Yukawa matrix of the neutrinos, \(Y_\nu\). More...
 
const gslpp::matrix< gslpp::complex > & getYu () const
 A get method to retrieve the Yukawa matrix of the up-type quarks, \(Y_u\). More...
 
virtual const double gLnuN2 () const
 The effective neutrino nucleon LH coupling: gLnuN2. More...
 
virtual const double gRnuN2 () const
 The effective neutrino nucleon RH coupling: gRnuN2. More...
 
virtual const gslpp::complex gV_f (const Particle f) const
 The effective leptonic neutral-current vector coupling \(g_V^l\) in the SM. More...
 
virtual const double gVnue () const
 The effective (muon) neutrino-electron vector coupling: gVnue. More...
 
gslpp::complex I_triangle_1 (const double tau, const double lambda) const
 Loop function entering in the calculation of the effective \(HZ\gamma\) coupling. More...
 
gslpp::complex I_triangle_2 (const double tau, const double lambda) const
 Loop function entering in the calculation of the effective \(HZ\gamma\) coupling. More...
 
const double intMLL2eeeeus2 (const double s, const double t0, const double t1) const
 
const double intMLR2eeeets2 (const double s, const double t0, const double t1) const
 
const double intMLRtilde2eeeest2 (const double s, const double t0, const double t1) const
 
const double intMRR2eeeeus2 (const double s, const double t0, const double t1) const
 
const bool IsFlagNoApproximateGammaZ () const
 A method to retrieve the model flag NoApproximateGammaZ. More...
 
const bool IsFlagWithoutNonUniversalVC () const
 A method to retrieve the model flag WithoutNonUniversalVC. More...
 
const bool isSMSuccess () const
 A get method to retrieve the success status of the Standard Model update and matching. More...
 
virtual const gslpp::complex kappaZ_f (const Particle f) const
 The effective leptonic neutral-current coupling \(\kappa_Z^l\) in the SM. More...
 
virtual const double LEP2AFBbottom (const double s) const
 
virtual const double LEP2AFBcharm (const double s) const
 
virtual const double LEP2AFBe (const double s) const
 
virtual const double LEP2AFBmu (const double s) const
 
virtual const double LEP2AFBtau (const double s) const
 
virtual const double LEP2dsigmadcosBinE (const double s, const double cos, const double cosmin, const double cosmax) const
 
virtual const double LEP2dsigmadcosBinMu (const double s, const double cos, const double cosmin, const double cosmax) const
 
virtual const double LEP2dsigmadcosBinTau (const double s, const double cos, const double cosmin, const double cosmax) const
 
virtual const double LEP2dsigmadcosE (const double s, const double cos) const
 
virtual const double LEP2dsigmadcosMu (const double s, const double cos) const
 
virtual const double LEP2dsigmadcosTau (const double s, const double cos) const
 
virtual const double LEP2Rbottom (const double s) const
 
virtual const double LEP2Rcharm (const double s) const
 
virtual const double LEP2sigmaBottom (const double s) const
 
virtual const double LEP2sigmaCharm (const double s) const
 
virtual const double LEP2sigmaE (const double s) const
 
virtual const double LEP2sigmaHadron (const double s) const
 
virtual const double LEP2sigmaMu (const double s) const
 
virtual const double LEP2sigmaTau (const double s) const
 
const double MLL2eeff (const Particle f, const double s, const double t) const
 
const double MLR2eeff (const Particle f, const double s) const
 
const double MRL2eeff (const Particle f, const double s) const
 
const double MRR2eeff (const Particle f, const double s, const double t) const
 
const double Mw_tree () const
 The tree-level mass of the \(W\) boson, \(M_W^{\mathrm{tree}}\). More...
 
const double MwbarFromMw (const double Mw) const
 A method to convert the \(W\)-boson mass in the experimental/running-width scheme to that in the complex-pole/fixed-width scheme. More...
 
const double MwFromMwbar (const double Mwbar) const
 A method to convert the \(W\)-boson mass in the complex-pole/fixed-width scheme to that in the experimental/running-width scheme. More...
 
double Mzbar () const
 The \(Z\)-boson mass \(\overline{M}_Z\) in the complex-pole/fixed-width scheme. More...
 
virtual const double N_nu () const
 The number of neutrinos obtained indirectly from the measurements at the Z pole, \(N_{\nu}\). More...
 
virtual const double Qwemoller (const double q2, const double y) const
 The computation of the electron's weak charge. More...
 
virtual const double Qwn () const
 The computation of the neutron weak charge: Qwn. More...
 
virtual const double Qwp () const
 The computation of the proton weak charge: Qwp. More...
 
virtual const double R0_f (const Particle f) const
 The ratio \(R_\ell^0=\Gamma(Z\to {\rm hadrons})/\Gamma(Z\to \ell^+ \ell^-)\). More...
 
virtual const double R_inv () const
 The ratio of the invisible and leptonic (electron) decay widths of the \(Z\) boson, \(R_{inv}\). More...
 
virtual const double rho_GammaW (const Particle fi, const Particle fj) const
 EW radiative corrections to the width of \(W \to f_i \bar{f}_j\), denoted as \(\rho^W_{ij}\). More...
 
virtual const gslpp::complex rhoZ_f (const Particle f) const
 The effective leptonic neutral-current coupling \(\rho_Z^l\) in the SM. More...
 
virtual const double Ruc () const
 
virtual const double RWc () const
 The ratio \(R_{W,c)=\Gamma(W\to c + X)/\Gamma(W\to had)\). More...
 
virtual const double RWlilj (const Particle li, const Particle lj) const
 The lepton universality ratio \(R_{W,l_i/l_j)=\Gamma(W\to l_i \nu_i)/\Gamma(W\to l_j \nu_j)\). More...
 
virtual const double RZlilj (const Particle li, const Particle lj) const
 The lepton universality ratio \(R_{Z,l_i/l_j)=\Gamma(Z\to l_i^+ l_i^-)/\Gamma(Z\to l_j^+ l_j^-)\). More...
 
const double s02 () const
 The square of the sine of the weak mixing angle \(s_0^2\) defined without weak radiative corrections. More...
 
void setCKM (const CKM &CKMMatrix)
 A set method to change the CKM matrix. More...
 
void setFlagCacheInStandardModel (bool FlagCacheInStandardModel)
 A set method to change the model flag CacheInStandardModel of StandardModel. More...
 
void setFlagNoApproximateGammaZ (bool FlagNoApproximateGammaZ)
 
bool setFlagSigmaForAFB (const bool flagSigmaForAFB_i)
 
bool setFlagSigmaForR (const bool flagSigmaForR_i)
 
virtual bool setFlagStr (const std::string name, const std::string value)
 A method to set a flag of StandardModel. More...
 
void setRequireCKM (bool requireCKM)
 A set method to change the value of requireCKM. More...
 
void setSMSuccess (bool success) const
 A set method to change the success status of the Standard Model update and matching. More...
 
void setYd (const gslpp::matrix< gslpp::complex > &Yd)
 A set method to set the Yukawa matrix of the down-type quarks, \(Y_d\). More...
 
void setYe (const gslpp::matrix< gslpp::complex > &Ye)
 A set method to set the Yukawa matrix of the charged leptons, \(Y_e\). More...
 
void setYu (const gslpp::matrix< gslpp::complex > &Yu)
 A set method to set the Yukawa matrix of the up-type quarks, \(Y_u\). More...
 
virtual const double sigma0_had () const
 The hadronic cross section for \(e^+e^- \to Z \to \mathrm{hadrons}\) at the \(Z\)-pole, \(\sigma_h^0\). More...
 
virtual const double SigmaeeHee (const double sqrt_s, const double Pe, const double Pp) const
 The \(\sigma(e^+ e^- \to e^+ e^- H)\) in the Standard Model. More...
 
virtual const double SigmaeeHvv (const double sqrt_s, const double Pe, const double Pp) const
 The \(\sigma(e^+ e^- \to \nu \bar{\nu} H)\) in the Standard Model. More...
 
virtual const double SigmaeeZH (const double sqrt_s, const double Pe, const double Pp) const
 The \(\sigma(e^+ e^- \to Z H)\) in the Standard Model. More...
 
virtual const double sin2thetaEff (const Particle f) const
 The effective weak mixing angle \(\sin^2\theta_{\rm eff}^{\,\ell}\) for \(Z\ell\bar{\ell}\) at the the \(Z\)-mass scale. More...
 
 StandardModel ()
 The default constructor. More...
 
const double sW2 () const
 
virtual const double sW2 (const double Mw_i) const
 The square of the sine of the weak mixing angle in the on-shell scheme, denoted as \(s_W^2\). More...
 
const double sW2_MSbar_Approx () const
 The (approximated formula for the) square of the sine of the weak mixing angle in the MSbar scheme, denoted as \(\hat{s}_{W}^2\). See: PDG 22, R.L. Workman et al. (Particle Data Group), Prog. Theor. Exp. Phys. 2022, 083C01 (2022) More...
 
const double sW2_ND () const
 The square of the sine of the weak mixing angle in the MSbar-ND scheme (w/o decoupling $\alpha\ln(m_t/M_Z)$ terms), denoted as \(\hat{s}_{ND}^2\). See: PDG 22, R.L. Workman et al. (Particle Data Group), Prog. Theor. Exp. Phys. 2022, 083C01 (2022) (eq. 10.13a/10.13b) More...
 
virtual const double TauLFU_gmuge () const
 The computation of the LFU ratio \(g_\mu/ g_e \). More...
 
virtual const double TauLFU_gtauge () const
 The computation of the LFU ratio \(g_\tau/ g_e \). More...
 
virtual const double TauLFU_gtaugmu () const
 The computation of the LFU ratio \(g_\tau/ g_\mu \). More...
 
virtual const double TauLFU_gtaugmuK () const
 The computation of the LFU ratio \(\left(g_\tau/ g_\mu\right)_K \). More...
 
virtual const double TauLFU_gtaugmuPi () const
 The computation of the LFU ratio \(\left(g_\tau/ g_\mu\right)_\pi \). More...
 
virtual const double ThetaLnuN () const
 The effective neutrino nucleon LH parameter: ThetaLnuN. More...
 
virtual const double ThetaRnuN () const
 The effective neutrino nucleon RH parameter: ThetaRnuN. More...
 
const double tovers2 (const double cosmin, const double cosmax) const
 
const double uovers2 (const double cosmin, const double cosmax) const
 
const double v () const
 The Higgs vacuum expectation value. More...
 
virtual ~StandardModel ()
 The default destructor. More...
 
- Public Member Functions inherited from QCD
const double AboveTh (const double mu) const
 The active flavour threshold above the scale \(\mu\) as defined in QCD::Thresholds(). More...
 
void addParameters (std::vector< std::string > params_i)
 A method to add parameters that are specific to only one set of observables. More...
 
const double Als (const double mu, const int Nf_in, const orders order=FULLNLO) const
 Computes the running strong coupling \(\alpha_s(\mu)\) with \(N_f\) active flavours in the \(\overline{\mathrm{MS}}\) scheme. In the cases of LO, NLO and FULLNLO, the coupling is computed with AlsWithInit(). On the other hand, in the cases of NNLO and FULLNNLO, the coupling is computed with AlsWithLambda(). More...
 
const double Als (const double mu, const orders order=FULLNLO, const bool Nf_thr=true) const
 
const double Als4 (const double mu) const
 The value of \(\alpha_s^{\mathrm{FULLNLO}}\) at any scale \(\mu\) with the number of flavours \(n_f = 4\). More...
 
const double AlsByOrder (const double mu, const int Nf_in, const orders order=FULLNLO) const
 
const double AlsByOrder (const double mu, const orders order=FULLNLO, bool Nf_thr=true) const
 
const double AlsOLD (const double mu, const orders order=FULLNLO) const
 Computes the running strong coupling \(\alpha_s(\mu)\) in the \(\overline{\mathrm{MS}}\) scheme. In the cases of LO, NLO and FULLNNLO, the coupling is computed with AlsWithInit(). On the other hand, in the cases of NNLO and FULLNNLO, the coupling is computed with AlsWithLambda(). More...
 
const double AlsWithInit (const double mu, const double alsi, const double mu_i, const int nf, const orders order) const
 Computes the running strong coupling \(\alpha_s(\mu)\) from \(\alpha_s(\mu_i)\) in the \(\overline{\mathrm{MS}}\) scheme, where it is forbidden to across a flavour threshold in the RG running from \(\mu_i\) to \(\mu\). More...
 
const double AlsWithLambda (const double mu, const orders order) const
 Computes the running strong coupling \(\alpha_s(\mu)\) in the \(\overline{\mathrm{MS}}\) scheme with the use of \(\Lambda_{\rm QCD}\). More...
 
const double BelowTh (const double mu) const
 The active flavour threshold below the scale \(\mu\) as defined in QCD::Thresholds(). More...
 
const double Beta0 (const double nf) const
 The \(\beta_0(n_f)\) coefficient for a certain number of flavours \(n_f\). More...
 
const double Beta1 (const double nf) const
 The \(\beta_1(n_f)\) coefficient for a certain number of flavours \(n_f\). More...
 
const double Beta2 (const double nf) const
 The \(\beta_2(n_f)\) coefficient for a certain number of flavours \(n_f\). More...
 
const double Beta3 (const double nf) const
 The \(\beta_3(n_f)\) coefficient for a certain number of flavours \(n_f\). More...
 
void CacheShift (double cache[][5], int n) const
 A member used to manage the caching for this class. More...
 
void CacheShift (int cache[][5], int n) const
 
const orders FullOrder (orders order) const
 Return the FULLORDER enum corresponding to order. More...
 
const double Gamma0 (const double nf) const
 The \(\gamma_0\) coefficient used to compute the running of a mass. More...
 
const double Gamma1 (const double nf) const
 The \(\gamma_1\) coefficient used to compute the running of a mass. More...
 
const double Gamma2 (const double nf) const
 The \(\gamma_2\) coefficient used to compute the running of a mass. More...
 
const double getAlsM () const
 A get method to access the value of \(\alpha_s(M_{\alpha_s})\). More...
 
const BParametergetBBd () const
 For getting the bag parameters corresponding to the operator basis \(O_1 -O_5\) in \(\Delta b = 2\) process in the \(B_d\) meson system. More...
 
const BParametergetBBd_subleading () const
 For getting the subleading bag parameters \(R_2 - R_3\) in \(\Delta b = 2\) process in the \(B_d\) meson system. More...
 
const BParametergetBBs () const
 For getting the bag parameters corresponding to the operator basis \(O_1 -O_5\) in \(\Delta b = 2\) process in the \(B_s\) meson system. More...
 
const BParametergetBBs_subleading () const
 For getting the subleading bag parameters \(R_2 - R_3\) in \(\Delta b = 2\) process in the \(B_s\) meson system. More...
 
const BParametergetBD () const
 For getting the bag parameters corresponding to the operator basis \(O_1 -O_5\) in \(\Delta c = 2\) process in the \(D^0\) meson system. More...
 
const BParametergetBK () const
 For getting the bag parameters corresponding to the operator basis \(O_1 -O_5\) in \(\Delta s = 2\) process in the \(K^0\) meson system. More...
 
const BParametergetBKd1 () const
 
const BParametergetBKd3 () const
 
const double getCF () const
 A get method to access the Casimir factor of QCD. More...
 
const double getMAls () const
 A get method to access the mass scale \(M_{\alpha_s}\) at which the strong coupling constant measurement is provided. More...
 
const MesongetMesons (const QCD::meson m) const
 A get method to access a meson as an object of the type Meson. More...
 
const double getMtpole () const
 A get method to access the pole mass of the top quark. More...
 
const double getMub () const
 A get method to access the threshold between five- and four-flavour theory in GeV. More...
 
const double getMuc () const
 A get method to access the threshold between four- and three-flavour theory in GeV. More...
 
const double getMut () const
 A get method to access the threshold between six- and five-flavour theory in GeV. More...
 
const double getNc () const
 A get method to access the number of colours \(N_c\). More...
 
const double getOptionalParameter (std::string name) const
 A method to get parameters that are specific to only one set of observables. More...
 
const ParticlegetQuarks (const QCD::quark q) const
 A get method to access a quark as an object of the type Particle. More...
 
std::vector< std::string > getUnknownParameters ()
 A method to get the vector of the parameters that have been specified in the configuration file but not being used. More...
 
void initializeBParameter (std::string name_i) const
 A method to initialize B Parameter and the corresponding meson. More...
 
void initializeMeson (QCD::meson meson_i) const
 A method to initialize a meson. More...
 
bool isQCDsuccess () const
 A getter for the QCDsuccess flag. More...
 
const double logLambda (const double nf, orders order) const
 Computes \(\ln\Lambda_\mathrm{QCD}\) with nf flavours in GeV. More...
 
const double Mbar2Mp (const double mbar, const quark q, const orders order=FULLNNLO) const
 Converts the \(\overline{\mathrm{MS}}\) mass \(m(m)\) to the pole mass. More...
 
const double Mofmu2Mbar (const double m, const double mu, const quark q) const
 Converts a quark running mass at an arbitrary scale to the corresponding \(\overline{\mathrm{MS}}\) mass \(m(m)\). More...
 
const double Mp2Mbar (const double mp, const quark q, orders order=FULLNNLO) const
 Converts a quark pole mass to the corresponding \(\overline{\mathrm{MS}}\) mass \(m(m)\). More...
 
const double Mrun (const double mu, const double m, const quark q, const orders order=FULLNNLO) const
 Computes a running quark mass \(m(\mu)\) from \(m(m)\). More...
 
const double Mrun (const double mu_f, const double mu_i, const double m, const quark q, const orders order=FULLNNLO) const
 Runs a quark mass from \(\mu_i\) to \(\mu_f\). More...
 
const double Mrun4 (const double mu_f, const double mu_i, const double m) const
 The running of a mass with the number of flavours \(n_f = 4\). More...
 
const double MS2DRqmass (const double MSbar) const
 Converts a quark mass from the \(\overline{\mathrm{MS}}\) scheme to the \(\overline{\mathrm{DR}}\) scheme. More...
 
const double MS2DRqmass (const double MSscale, const double MSbar) const
 Converts a quark mass from the \(\overline{\mathrm{MS}}\) scheme to the \(\overline{\mathrm{DR}}\) scheme. More...
 
const double Nf (const double mu) const
 The number of active flavour at scale \(\mu\). More...
 
const double NfThresholdCorrections (double mu, double M, double als, int nf, orders order) const
 Threshold corrections in matching \(\alpha_s(n_f+1)\) with \(\alpha_s(n_f)\) from eq. (34) of hep-ph/0512060. More...
 
const std::string orderToString (const orders order) const
 Converts an object of the enum type "orders" to the corresponding string. More...
 
 QCD ()
 Constructor. More...
 
void setComputemt (bool computemt)
 A set method to change the value of computemt. More...
 
void setMtpole (double mtpole_in)
 A method to set the pole mass of the top quark. More...
 
void setNc (double Nc)
 A set method to change the number of colours \(N_c\). More...
 
void setOptionalParameter (std::string name, double value)
 A method to set the parameter value for the parameters that are specific to only one set of observables. More...
 
void setQuarkMass (const quark q, const double mass)
 A set method to change the mass of a quark. More...
 
const double Thresholds (const int i) const
 For accessing the active flavour threshold scales. More...
 
- Public Member Functions inherited from Model
void addMissingModelParameter (const std::string &missingParameterName)
 
std::vector< std::string > getmissingModelParameters ()
 
unsigned int getMissingModelParametersCount ()
 
std::string getModelName () const
 A method to fetch the name of the model. More...
 
const double & getModelParam (std::string name) const
 
bool isModelFWC_DF2 () const
 
bool isModelGeneralTHDM () const
 
bool isModelGeorgiMachacek () const
 
bool IsModelInitialized () const
 A method to check if the model is initialized. More...
 
bool isModelLinearized () const
 
bool isModelNPquadratic () const
 
bool isModelParam (std::string name) const
 
bool isModelSUSY () const
 
bool isModelTHDM () const
 
bool isModelTHDMW () const
 
bool IsUpdateError () const
 A method to check if there was any error in the model update process. More...
 
 Model ()
 The default constructor. More...
 
void raiseMissingModelParameterCount ()
 
void setModelFWC_DF2 ()
 
void setModelGeneralTHDM ()
 
void setModelGeorgiMachacek ()
 
void setModelInitialized (bool ModelInitialized)
 A set method to fix the failure or success of the initialization of the model. More...
 
void setModelLinearized (bool linearized=true)
 
void setModelName (const std::string name)
 A method to set the name of the model. More...
 
void setModelNPquadratic (bool NPquadratic=true)
 
void setModelSUSY ()
 
void setModelTHDM ()
 
void setModelTHDMW ()
 
void setSliced (bool Sliced)
 
void setUpdateError (bool UpdateError)
 A set method to fix the update status as success or failure. More...
 
virtual ~Model ()
 The default destructor. More...
 

Static Public Attributes

static const int NSUSYvars = 10
 
static const std::string SUSYvars [NSUSYvars]
 
- Static Public Attributes inherited from StandardModel
static const double GeVminus2_to_nb = 389379.338
 
static const double Mw_error = 0.00001
 The target accuracy of the iterative calculation of the \(W\)-boson mass in units of GeV. More...
 
static const int NSMvars = 26
 The number of the model parameters in StandardModel. More...
 
static const int NumSMParamsForEWPO = 33
 The number of the SM parameters that are relevant to the EW precision observables. More...
 
static std::string SMvars [NSMvars]
 A string array containing the labels of the model parameters in StandardModel. More...
 
- Static Public Attributes inherited from QCD
static const int NQCDvars = 11
 The number of model parameters in QCD. More...
 
static std::string QCDvars [NQCDvars]
 An array containing the labels under which all QCD parameters are stored in a vector of ModelParameter via InputParser::ReadParameters(). More...
 

Protected Member Functions

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

Protected Attributes

double cosb
 
gslpp::complex m1
 
gslpp::complex m2
 
double m3
 
gslpp::vector< double > m_sd2
 
gslpp::vector< double > m_sdresum2
 
gslpp::vector< double > m_se2
 
gslpp::vector< double > m_sn2
 
gslpp::vector< double > m_su2
 
gslpp::vector< double > mch
 
double md_Q [3]
 
double me_Q [3]
 
double mh [4]
 
double mHp
 
double mHptree
 
double mn_Q [3]
 
gslpp::vector< double > mneu
 
gslpp::matrix< gslpp::complex > msDhat2
 
gslpp::matrix< gslpp::complex > msEhat2
 
gslpp::matrix< gslpp::complex > msLhat2
 
gslpp::matrix< gslpp::complex > msNhat2
 
gslpp::matrix< gslpp::complex > msQhat2
 
gslpp::matrix< gslpp::complex > msUhat2
 
double mu_Q [3]
 
gslpp::complex muH
 
FeynHiggsWrappermyFH
 
SUSYSpectrummySUSYSpectrum
 
gslpp::matrix< gslpp::complex > N
 
double Q_SUSY
 
gslpp::matrix< gslpp::complex > Rd
 
gslpp::matrix< gslpp::complex > Rdresum
 
gslpp::matrix< gslpp::complex > Rl
 
gslpp::matrix< gslpp::complex > Rn
 
gslpp::matrix< gslpp::complex > Ru
 
gslpp::complex saeff
 
double sinb
 
double tanb
 
gslpp::matrix< gslpp::complex > TDhat
 
gslpp::matrix< gslpp::complex > TEhat
 
gslpp::matrix< gslpp::complex > TNhat
 
gslpp::matrix< gslpp::complex > TUhat
 
gslpp::matrix< gslpp::complex > U
 
gslpp::matrix< gslpp::complex > V
 
- Protected Attributes inherited from StandardModel
double A
 The CKM parameter \(A\) in the Wolfenstein parameterization. More...
 
double ale
 The fine-structure constant \(\alpha\). More...
 
double alpha21
 
double alpha31
 
double AlsMz
 The strong coupling constant at the Z-boson mass, \(\alpha_s(M_Z)\). More...
 
bool bSigmaForAFB
 
bool bSigmaForR
 
double dAl5hMz
 The five-flavour hadronic contribution to the electromagnetic coupling, \(\Delta\alpha_{\mathrm{had}}^{(5)}(M_Z^2)\). (Non-input parameter) More...
 
double dAle5Mz
 The five-flavour hadronic contribution to the electromagnetic coupling, \(\Delta\alpha_{\mathrm{had}}^{(5)}(M_Z^2)\), used as input for FlagMWinput = FALSE. More...
 
double delGammaZ
 The theoretical uncertainty in \(\Gamma_Z\), denoted as \(\delta\,\Gamma_Z\), in GeV. More...
 
double delMw
 The theoretical uncertainty in \(M_W\), denoted as \(\delta\,M_W\), in GeV. More...
 
double delR0b
 The theoretical uncertainty in \(R_b^0\), denoted as \(\delta\,R_b^0\). More...
 
double delR0c
 The theoretical uncertainty in \(R_c^0\), denoted as \(\delta\,R_c^0\). More...
 
double delR0l
 The theoretical uncertainty in \(R_l^0\), denoted as \(\delta\,R_l^0\). More...
 
double delsigma0H
 The theoretical uncertainty in \(\sigma_{Hadron}^0\), denoted as \(\delta\,\sigma_{Hadron}^0\) in nb. More...
 
double delSin2th_b
 The theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{b}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{b}\). More...
 
double delSin2th_l
 The theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{\rm lept}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{\rm lept}\). More...
 
double delSin2th_q
 The theoretical uncertainty in \(\sin^2\theta_{\rm eff}^{q\not = b,t}\), denoted as \(\delta\sin^2\theta_{\rm eff}^{q\not = b,t}\). More...
 
double delta
 
double etab
 The CKM parameter \(\bar{\eta}\) in the Wolfenstein parameterization. More...
 
bool flag_order [orders_EW_size]
 An array of internal flags controlling the inclusions of higher-order corrections. More...
 
bool FlagFixMuwMut
 A boolean for the model flag FixMuwMut. More...
 
bool flagLEP2 [NUMofLEP2RCs]
 
double gamma
 \(\gamma \) used as an input for FlagWolfenstein = FALSE More...
 
double GF
 The Fermi constant \(G_\mu\) in \({\rm GeV}^{-2}\). More...
 
double lambda
 The CKM parameter \(\lambda\) in the Wolfenstein parameterization. More...
 
Particle leptons [6]
 An array of Particle objects for the leptons. More...
 
double mHl
 The Higgs mass \(m_h\) in GeV. More...
 
double muw
 A matching scale \(\mu_W\) around the weak scale in GeV. More...
 
double Mw_inp
 The mass of the \(W\) boson in GeV used as input for FlagMWinput = TRUE. More...
 
CKM myCKM
 An object of type CKM. More...
 
PMNS myPMNS
 
double Mz
 The mass of the \(Z\) boson in GeV. More...
 
bool requireCKM
 An internal flag to control whether the CKM matrix has to be recomputed. More...
 
bool requireYe
 An internal flag to control whether the charged-lepton Yukawa matrix has to be recomputed. More...
 
bool requireYn
 An internal flag to control whether the neutrino Yukawa matrix has to be recomputed. More...
 
double rhob
 The CKM parameter \(\bar{\rho}\) in the Wolfenstein parameterization. More...
 
double s12
 
double s13
 
double s23
 
Flavour SMFlavour
 An object of type Flavour. More...
 
Matching< StandardModelMatching, StandardModelSMM
 An object of type Matching. More...
 
double Vcb
 \(\vert V_{cb} \vert \) used as an input for FlagWolfenstein = FALSE More...
 
double Vub
 \(\vert V_{ub} \vert \) used as an input for FlagWolfenstein = FALSE More...
 
double Vud
 \(\vert V_{ud} \vert \) used as an input for FlagWolfenstein = FALSE and FlagUseVud = TRUE More...
 
double Vus
 \(\vert V_{us} \vert \) used as an input for FlagWolfenstein = FALSE More...
 
gslpp::matrix< gslpp::complex > Yd
 The Yukawa matrix of the down-type quarks. More...
 
gslpp::matrix< gslpp::complex > Ye
 The Yukawa matrix of the charged leptons. More...
 
gslpp::matrix< gslpp::complex > Yn
 The Yukawa matrix of the neutrinos. More...
 
gslpp::matrix< gslpp::complex > Yu
 The Yukawa matrix of the up-type quarks. More...
 
- Protected Attributes inherited from QCD
double AlsM
 The strong coupling constant at the mass scale MAls, \(\alpha_s(M_{\alpha_s})\). More...
 
double CA
 
double CF
 
bool computemt
 Switch for computing the \(\overline{\mathrm{MS}}\) mass of the top quark. More...
 
double dAdA_NA
 
double dFdA_NA
 
double dFdF_NA
 
bool FlagMpole2MbarNumeric
 A flag to determine whether the pole mass to \(\over \mathrm{MS}\) mass conversion is done numerically. More...
 
bool FlagMtPole
 A flag to determine whether the pole mass of the top quark is used as input. More...
 
double MAls
 The mass scale in GeV at which the strong coupling measurement is provided. More...
 
double mtpole
 The pole mass of the top quark. More...
 
double mub
 The threshold between five- and four-flavour theory in GeV. More...
 
double muc
 The threshold between four- and three-flavour theory in GeV. More...
 
double mut
 The threshold between six- and five-flavour theory in GeV. More...
 
double NA
 
double Nc
 The number of colours. More...
 
bool QCDsuccess =true
 
Particle quarks [6]
 The vector of all SM quarks. More...
 
bool requireYd
 Switch for generating the Yukawa couplings to the down-type quarks. More...
 
bool requireYu
 Switch for generating the Yukawa couplings to the up-type quarks. More...
 
double TF
 
- Protected Attributes inherited from Model
bool isSliced = false
 A boolean set to true if the current istance is a slice of an extended object. More...
 
std::map< std::string, std::reference_wrapper< const double > > ModelParamMap
 
bool UpdateError = false
 A boolean set to false if update is successful. More...
 

Private Attributes

bool flag_ch
 
bool flag_fh
 
bool flag_g
 
bool flag_h
 
bool flag_ne
 
EWSUSYmyEWSUSY
 
Matching< SUSYMatching, SUSYSUSYM
 

Friends

class FeynHiggsWrapper
 
class SUSYSpectrum
 Friend classes of SUSY class. More...
 

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...
 

Constructor & Destructor Documentation

◆ SUSY()

SUSY::SUSY ( )

A SUSY constructor.

Definition at line 26 of file SUSY.cpp.

27: StandardModel(),
28 msQhat2(3,3,0.), msUhat2(3,3,0.), msDhat2(3,3,0.),msLhat2(3,3,0.), msNhat2(3,3,0.), msEhat2(3,3,0.),
29 TUhat(3,3,0.), TDhat(3,3,0.), TNhat(3,3,0.), TEhat(3,3,0.),
30 mch(2,0.), mneu(4,0.), m_su2(6,0.), m_sd2(6,0.), m_sdresum2(6,0.), m_sn2(6,0.), m_se2(6,0.),
31 U(2,2,0.), V(2,2,0.), N(4,4,0.),
32 Ru(6,6,0.), Rd(6,6,0.), Rdresum(6,6,0.), Rn(6,6,0.), Rl(6,6,0.),SUSYM(*this)
33{
34 SMM.setObj((StandardModelMatching&) SUSYM.getObj());
35 ModelParamMap.insert(std::make_pair("m1r", std::cref(m1.real())));
36 ModelParamMap.insert(std::make_pair("m1i", std::cref(m1.imag())));
37 ModelParamMap.insert(std::make_pair("m2r", std::cref(m2.real())));
38 ModelParamMap.insert(std::make_pair("m2i", std::cref(m2.imag())));
39 ModelParamMap.insert(std::make_pair("m3", std::cref(m3)));
40 ModelParamMap.insert(std::make_pair("muHr", std::cref(muH.real())));
41 ModelParamMap.insert(std::make_pair("muHi", std::cref(muH.imag())));
42 ModelParamMap.insert(std::make_pair("mHptree", std::cref(mHptree)));
43 ModelParamMap.insert(std::make_pair("tanb", std::cref(tanb)));
44 ModelParamMap.insert(std::make_pair("Q_SUSY", std::cref(Q_SUSY)));
45
46 flag_fh = false;
47 flag_h = false;
48 flag_g = false;
49 flag_ch = false;
50 flag_ne = false;
51}
std::map< std::string, std::reference_wrapper< const double > > ModelParamMap
Definition: Model.h:280
gslpp::matrix< gslpp::complex > msDhat2
Definition: SUSY.h:576
gslpp::matrix< gslpp::complex > N
Definition: SUSY.h:586
gslpp::matrix< gslpp::complex > TEhat
Definition: SUSY.h:577
gslpp::vector< double > m_se2
Definition: SUSY.h:583
gslpp::complex m1
Definition: SUSY.h:568
gslpp::vector< double > m_sd2
Definition: SUSY.h:583
gslpp::vector< double > mch
Definition: SUSY.h:582
gslpp::matrix< gslpp::complex > msUhat2
Definition: SUSY.h:576
gslpp::matrix< gslpp::complex > TUhat
Definition: SUSY.h:577
bool flag_h
Definition: SUSY.h:593
gslpp::vector< double > mneu
Definition: SUSY.h:582
gslpp::matrix< gslpp::complex > msQhat2
Definition: SUSY.h:576
gslpp::matrix< gslpp::complex > msNhat2
Definition: SUSY.h:576
gslpp::vector< double > m_sn2
Definition: SUSY.h:583
double Q_SUSY
Definition: SUSY.h:569
gslpp::matrix< gslpp::complex > Rdresum
Definition: SUSY.h:586
gslpp::matrix< gslpp::complex > Rl
Definition: SUSY.h:586
bool flag_g
Definition: SUSY.h:593
double tanb
Definition: SUSY.h:569
Matching< SUSYMatching, SUSY > SUSYM
Definition: SUSY.h:594
gslpp::matrix< gslpp::complex > msLhat2
Definition: SUSY.h:576
gslpp::matrix< gslpp::complex > U
Definition: SUSY.h:586
bool flag_ne
Definition: SUSY.h:593
gslpp::vector< double > m_su2
Definition: SUSY.h:583
gslpp::vector< double > m_sdresum2
Definition: SUSY.h:583
double mHptree
Definition: SUSY.h:569
gslpp::complex muH
Definition: SUSY.h:568
gslpp::matrix< gslpp::complex > Rn
Definition: SUSY.h:586
gslpp::matrix< gslpp::complex > Rd
Definition: SUSY.h:586
gslpp::complex m2
Definition: SUSY.h:568
gslpp::matrix< gslpp::complex > msEhat2
Definition: SUSY.h:576
gslpp::matrix< gslpp::complex > V
Definition: SUSY.h:586
gslpp::matrix< gslpp::complex > TNhat
Definition: SUSY.h:577
bool flag_fh
Definition: SUSY.h:593
gslpp::matrix< gslpp::complex > Ru
Definition: SUSY.h:586
double m3
Definition: SUSY.h:569
gslpp::matrix< gslpp::complex > TDhat
Definition: SUSY.h:577
bool flag_ch
Definition: SUSY.h:593
StandardModel()
The default constructor.
Matching< StandardModelMatching, StandardModel > SMM
An object of type Matching.
A class for the matching in the Standard Model.

◆ ~SUSY()

SUSY::~SUSY ( )

A SUSY destructor.

Definition at line 53 of file SUSY.cpp.

54{
55 if (IsModelInitialized()) {
56/* BEGIN: REMOVE FROM THE PACKAGE */
57#if FEYNHIGGS
58 if (myFH != NULL) delete(myFH);
59#endif
60/* END: REMOVE FROM THE PACKAGE */
61 if (mySUSYSpectrum != NULL) delete(mySUSYSpectrum);
62 if (myEWSUSY != NULL) delete(myEWSUSY);
63 }
64}
bool IsModelInitialized() const
A method to check if the model is initialized.
Definition: Model.h:136
SUSYSpectrum * mySUSYSpectrum
Definition: SUSY.h:565
EWSUSY * myEWSUSY
Definition: SUSY.h:595
FeynHiggsWrapper * myFH
Definition: SUSY.h:561

Member Function Documentation

◆ CheckParameters()

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

Reimplemented from StandardModel.

Reimplemented in GeneralSUSY, MFV, and pMSSM.

Definition at line 272 of file SUSY.cpp.

273{
274 for(int i=0; i<NSUSYvars; i++)
275 if(DPars.find(SUSYvars[i])==DPars.end()) {
276 std::cout << "ERROR: missing mandatory SUSY parameter " << SUSYvars[i] << std::endl;
279 }
281}
std::map< std::string, double > DPars
Definition: Minimal.cpp:11
void addMissingModelParameter(const std::string &missingParameterName)
Definition: Model.h:250
void raiseMissingModelParameterCount()
Definition: Model.h:260
static const std::string SUSYvars[NSUSYvars]
Definition: SUSY.h:37
static const int NSUSYvars
Definition: SUSY.h:36
virtual bool CheckParameters(const std::map< std::string, double > &DPars)
A method to check if all the mandatory parameters for StandardModel have been provided in model initi...

◆ computeYukawas()

void SUSY::computeYukawas ( )
protectedvirtual

Reimplemented from StandardModel.

Definition at line 294 of file SUSY.cpp.

295{
296 /* initializations */
297 Yu = gslpp::matrix<gslpp::complex>::Id(3);
298 Yd = gslpp::matrix<gslpp::complex>::Id(3);
299 Ye = gslpp::matrix<gslpp::complex>::Id(3);
300 Yn = gslpp::matrix<gslpp::complex>::Id(3);
301
302 /* Convert the top-quark pole mass to the MSbar mass */
303 double mtbar = Mp2Mbar(mtpole, QCD::TOP, FULLNLO);
304
305 double Q_SUSY_temp = Q_SUSY;
306 if( Q_SUSY == -1 || Q_SUSY == 0) Q_SUSY = sqrt( sqrt(msQhat2(2,2).abs() * msUhat2(2,2).abs() ) );
307
308 for (int i = 0; i < 3; i++) {
309 /* Run the quark masses to scale Q */
310 if (i != 2)
311 mu_Q[i] = Mrun(Q_SUSY, getQuarks((quark)(UP + 2 * i)).getMass_scale(),
312 getQuarks((quark)(UP + 2 * i)).getMass(), (quark)(UP + 2 * i),FULLNLO);
313 else
314 mu_Q[i] = Mrun(Q_SUSY, mtbar, QCD::TOP, FULLNLO);
315 md_Q[i] = Mrun(Q_SUSY, getQuarks((quark)(DOWN + 2 * i)).getMass_scale(),
316 getQuarks((quark)(DOWN + 2 * i)).getMass(), (quark)(DOWN + 2 * i), FULLNLO);
317 me_Q[i] = getLeptons((lepton)(ELECTRON + 2 * i)).getMass();
318 mn_Q[i] = getLeptons((lepton)(NEUTRINO_1 + 2 * i)).getMass();
319
320 /* Convert MSbar to DRbar */
321 mu_Q[i] = MS2DRqmass(Q_SUSY, mu_Q[i]);
322 md_Q[i] = MS2DRqmass(Q_SUSY, md_Q[i]);
323
324 Yu.assign(i, i, mu_Q[i] / v2() * sqrt(2.));
325 Yd.assign(i, i, md_Q[i] / v1() * sqrt(2.));
326 Ye.assign(i, i, me_Q[i] / v1() * sqrt(2.));
327 Yn.assign(i, i, mn_Q[i] / v2() * sqrt(2.));
328 }
329
330 Yu = myCKM.getCKM().transpose()*Yu;
331 Yn = Yn * myPMNS.getPMNS().hconjugate();
332
333 Q_SUSY = Q_SUSY_temp;
334
335}
@ FULLNLO
Definition: OrderScheme.h:38
const gslpp::matrix< gslpp::complex > getCKM() const
A member for returning the CKM matrix.
Definition: CKM.h:59
gslpp::matrix< gslpp::complex > getPMNS() const
A member for returning the PMNS matrix.
Definition: PMNS.h:42
const double & getMass() const
A get method to access the particle mass.
Definition: Particle.h:61
const double MS2DRqmass(const double MSscale, const double MSbar) const
Converts a quark mass from the scheme to the scheme.
Definition: QCD.cpp:1725
const double Mrun(const double mu, const double m, const quark q, const orders order=FULLNNLO) const
Computes a running quark mass from .
Definition: QCD.cpp:1353
quark
An enum type for quarks.
Definition: QCD.h:323
@ UP
Definition: QCD.h:324
@ TOP
Definition: QCD.h:328
@ DOWN
Definition: QCD.h:325
const double Mp2Mbar(const double mp, const quark q, orders order=FULLNNLO) const
Converts a quark pole mass to the corresponding mass .
Definition: QCD.cpp:1672
lepton
An enum type for leptons.
Definition: QCD.h:310
@ NEUTRINO_1
Definition: QCD.h:311
@ ELECTRON
Definition: QCD.h:312
const Particle & getQuarks(const QCD::quark q) const
A get method to access a quark as an object of the type Particle.
Definition: QCD.h:536
double v2() const
Definition: SUSY.cpp:384
double mn_Q[3]
Definition: SUSY.h:589
double mu_Q[3]
Definition: SUSY.h:589
double md_Q[3]
Definition: SUSY.h:589
double me_Q[3]
Definition: SUSY.h:589
double v1() const
Definition: SUSY.cpp:379
const Particle & getLeptons(const QCD::lepton p) const
A get method to retrieve the member object of a lepton.
CKM myCKM
An object of type CKM.
gslpp::matrix< gslpp::complex > Yn
The Yukawa matrix of the neutrinos.
gslpp::matrix< gslpp::complex > Yu
The Yukawa matrix of the up-type quarks.
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.
A class for , the pole mass of the top quark.
Definition: masses.h:164

◆ getCosb()

const double SUSY::getCosb ( ) const
inline

Gets \(\cos\beta\).

Returns
\(\cos\beta\).

Definition at line 217 of file SUSY.h.

218 {
219 return cosb;
220 }
double cosb
Definition: SUSY.h:572

◆ getM1()

gslpp::complex SUSY::getM1 ( ) const
inline

Gets the bino mass.

Returns
The bino mass.

Definition at line 131 of file SUSY.h.

132 {
133 return m1;
134 }

◆ getM2()

gslpp::complex SUSY::getM2 ( ) const
inline

Gets the wino mass.

Returns
The wino mass.

Definition at line 140 of file SUSY.h.

141 {
142 return m2;
143 }

◆ getM3()

const double SUSY::getM3 ( ) const
inline

Gets the gluino mass.

Returns
The gluino mass.

Definition at line 149 of file SUSY.h.

150 {
151 return m3;
152 }

◆ getMatching()

virtual SUSYMatching & SUSY::getMatching ( ) const
inlinevirtual

Reimplemented from StandardModel.

Definition at line 74 of file SUSY.h.

75 {
76 return SUSYM.getObj();
77 }

◆ getMch()

gslpp::vector< double > SUSY::getMch ( ) const
inline

Gets the chargino masses.

Returns
The chargino masses.

Definition at line 285 of file SUSY.h.

286 {
287 return mch;
288 }

◆ getMGl()

const double SUSY::getMGl ( ) const

Gets the gluino mass obtained from FHGetPara().

Returns
The gluino mass obtained from FHGetPara().

Definition at line 389 of file SUSY.cpp.

390{
391/* BEGIN: REMOVE FROM THE PACKAGE */
392#if FEYNHIGGS
393 if (IsFlag_FH()) return myFH->getMGl();
394#endif
395/* END: REMOVE FROM THE PACKAGE */
396 return m3;
397}
bool IsFlag_FH() const
Definition: SUSY.h:118

◆ getMHa()

const double SUSY::getMHa ( ) const
inline

Gets the pseudo-scalar Higgs mass.

Returns
The pseudo-scalar Higgs mass.

Definition at line 253 of file SUSY.h.

254 {
255 return mh[2];
256 }
double mh[4]
Definition: SUSY.h:580

◆ getMHh()

const double SUSY::getMHh ( ) const
inline

Gets the heavy Higgs mass.

Returns
The heavy Higgs mass.

Definition at line 244 of file SUSY.h.

245 {
246 return mh[1];
247 }

◆ getMHl()

virtual const double SUSY::getMHl ( ) const
inlinevirtual

Gets the light Higgs mass.

Returns
The light Higgs mass.

Reimplemented from StandardModel.

Definition at line 235 of file SUSY.h.

236 {
237 return mh[0];
238 }

◆ getMHp()

const double SUSY::getMHp ( ) const
inline

Gets the charged Higgs mass.

Returns
The charged Higgs mass.

Definition at line 262 of file SUSY.h.

263 {
264 return mh[3];
265 }

◆ getMHptree()

const double SUSY::getMHptree ( ) const
inline

Gets the charged-Higgs mass at tree-level.

Returns
The charged-Higgs mass at tree-level.

Definition at line 158 of file SUSY.h.

159 {
160 return mHptree;
161 }

◆ getMneu()

gslpp::vector< double > SUSY::getMneu ( ) const
inline

Gets the neutralino masses.

Returns
The neutralino masses.

Definition at line 316 of file SUSY.h.

317 {
318 return mneu;
319 }

◆ getMsd2()

gslpp::vector< double > SUSY::getMsd2 ( ) const
inline

Gets the down-type squark mass squared.

Returns
The down-type squark mass squared.

Definition at line 380 of file SUSY.h.

381 {
382 return m_sd2;
383 }

◆ getMsDhat2()

gslpp::matrix< gslpp::complex > SUSY::getMsDhat2 ( ) const
inline

Definition at line 344 of file SUSY.h.

345 {
346 return msDhat2;
347 }

◆ getMsdresum2()

gslpp::vector< double > SUSY::getMsdresum2 ( ) const
inline

Gets the down-type squark mass squared with the \(\Delta_b\) corrections in the off-diagonal entries.

Returns
The down-type squark mass squared.

Definition at line 390 of file SUSY.h.

391 {
392 return m_sdresum2;
393 }

◆ getMse2()

gslpp::vector< double > SUSY::getMse2 ( ) const
inline

Gets the charged slepton mass squared.

Returns
The charged slepton mass squared.

Definition at line 472 of file SUSY.h.

473 {
474 return m_se2;
475 }

◆ getMsEhat2()

gslpp::matrix< gslpp::complex > SUSY::getMsEhat2 ( ) const
inline

Definition at line 436 of file SUSY.h.

437 {
438 return msEhat2;
439 }

◆ getMsLhat2()

gslpp::matrix< gslpp::complex > SUSY::getMsLhat2 ( ) const
inline

Definition at line 426 of file SUSY.h.

427 {
428 return msLhat2;
429 }

◆ getMsn2()

gslpp::vector< double > SUSY::getMsn2 ( ) const
inline

Gets the sneutrino mass squared.

Returns
The sneutrino mass squared.

Definition at line 463 of file SUSY.h.

464 {
465 return m_sn2;
466 }

◆ getMsNhat2()

gslpp::matrix< gslpp::complex > SUSY::getMsNhat2 ( ) const
inline

Definition at line 431 of file SUSY.h.

432 {
433 return msNhat2;
434 }

◆ getMsQhat2()

gslpp::matrix< gslpp::complex > SUSY::getMsQhat2 ( ) const
inline

Definition at line 334 of file SUSY.h.

335 {
336 return msQhat2;
337 }

◆ getMsu2()

gslpp::vector< double > SUSY::getMsu2 ( ) const
inline

Gets the up-type squark mass squared.

Returns
The up-type squark mass squared.

Definition at line 371 of file SUSY.h.

372 {
373 return m_su2;
374 }

◆ getMsUhat2()

gslpp::matrix< gslpp::complex > SUSY::getMsUhat2 ( ) const
inline

Definition at line 339 of file SUSY.h.

340 {
341 return msUhat2;
342 }

◆ getMuH()

gslpp::complex SUSY::getMuH ( ) const
inline

Gets the \(\mu\) parameter in the superpotential.

Returns
The \(\mu\) parameter in the superpotential.

Definition at line 167 of file SUSY.h.

168 {
169 return muH;
170 }

◆ getMyFH()

FeynHiggsWrapper * SUSY::getMyFH ( ) const
inline
Returns

Definition at line 67 of file SUSY.h.

68 {
69 return myFH;
70 }

◆ getN()

gslpp::matrix< gslpp::complex > SUSY::getN ( ) const
inline

Gets the rotation matrix for neutralinos.

Returns
The rotation matrix for neutralinos.

Definition at line 325 of file SUSY.h.

326 {
327 return N;
328 }

◆ getQ_SUSY()

const double SUSY::getQ_SUSY ( ) const
inline

Gets the scale of the input parameters.

Returns
The scale of the input parameters.

Definition at line 185 of file SUSY.h.

186 {
187 return Q_SUSY;
188 }

◆ getRd()

gslpp::matrix< gslpp::complex > SUSY::getRd ( ) const
inline

Gets the rotation matrix for down-type squarks.

Returns
The rotation matrix for down-type squarks.

Definition at line 408 of file SUSY.h.

409 {
410 return Rd;
411 }

◆ getRdresum()

gslpp::matrix< gslpp::complex > SUSY::getRdresum ( ) const
inline

Gets the rotation matrix for down-type squarks with the \(\Delta_b\) corrections in the off-diagonal entries.

Returns
The rotation matrix for down-type squarks.

Definition at line 418 of file SUSY.h.

419 {
420 return Rdresum;
421 }

◆ getRl()

gslpp::matrix< gslpp::complex > SUSY::getRl ( ) const
inline

Gets the rotation matrix for charged sleptons.

Returns
The rotation matrix for charged sleptons.

Definition at line 490 of file SUSY.h.

491 {
492 return Rl;
493 }

◆ getRn()

gslpp::matrix< gslpp::complex > SUSY::getRn ( ) const
inline

Gets the rotation matrix for sneutrinos.

Returns
The rotation matrix for sneutrinos.

Definition at line 481 of file SUSY.h.

482 {
483 return Rn;
484 }

◆ getRu()

gslpp::matrix< gslpp::complex > SUSY::getRu ( ) const
inline

Gets the rotation matrix for up-type squarks.

Returns
The rotation matrix for up-type squarks.

Definition at line 399 of file SUSY.h.

400 {
401 return Ru;
402 }

◆ getSaeff()

gslpp::complex SUSY::getSaeff ( ) const
inline

Gets the sine of the effective mixing angle for the CP-even neutral Higgs bosons.

Returns

Definition at line 226 of file SUSY.h.

227 {
228 return saeff;
229 }
gslpp::complex saeff
Definition: SUSY.h:581

◆ getSinb()

const double SUSY::getSinb ( ) const
inline

Gets \(\sin\beta\).

Returns
\(\sin\beta\).

Definition at line 208 of file SUSY.h.

209 {
210 return sinb;
211 }
double sinb
Definition: SUSY.h:572

◆ getTanb()

const double SUSY::getTanb ( ) const
inline

Gets \(\tan\beta\).

Returns
\(\tan\beta\).

Definition at line 176 of file SUSY.h.

177 {
178 return tanb;
179 }

◆ getTDhat()

gslpp::matrix< gslpp::complex > SUSY::getTDhat ( ) const
inline

Gets the trilinear-coupling matrix for down-type squarks.

Returns
The trilinear-coupling matrix for down-type squarks.

Definition at line 362 of file SUSY.h.

363 {
364 return TDhat;
365 }

◆ getTEhat()

gslpp::matrix< gslpp::complex > SUSY::getTEhat ( ) const
inline

Gets the trilinear-coupling matrix for charged sleptons.

Returns
The trilinear-coupling matrix for charged sleptons.

Definition at line 454 of file SUSY.h.

455 {
456 return TEhat;
457 }

◆ getTNhat()

gslpp::matrix< gslpp::complex > SUSY::getTNhat ( ) const
inline

Gets the trilinear-coupling matrix for sneutrinos.

Returns
The trilinear-coupling matrix for sneutrinos.

Definition at line 445 of file SUSY.h.

446 {
447 return TNhat;
448 }

◆ getTUhat()

gslpp::matrix< gslpp::complex > SUSY::getTUhat ( ) const
inline

Gets the trilinear-coupling matrix for up-type squarks.

Returns
The trilinear-coupling matrix for up-type squarks.

Definition at line 353 of file SUSY.h.

354 {
355 return TUhat;
356 }

◆ getU()

gslpp::matrix< gslpp::complex > SUSY::getU ( ) const
inline

Gets the rotation matrix for negative charginos.

Returns
The rotation matrix for negative charginos.

Definition at line 294 of file SUSY.h.

295 {
296 return U;
297 }

◆ getV()

gslpp::matrix< gslpp::complex > SUSY::getV ( ) const
inline

Gets the rotation matrix for positive charginos.

Returns
The rotation matrix for positive charginos.

Definition at line 303 of file SUSY.h.

304 {
305 return V;
306 }

◆ Init()

bool SUSY::Init ( const std::map< std::string, double > &  DPars)
virtual

Reimplemented from StandardModel.

Reimplemented in GeneralSUSY, MFV, and pMSSM.

Definition at line 88 of file SUSY.cpp.

89{
91}
virtual bool Init(const std::map< std::string, double > &DPars)
A method to initialize the model parameters.

◆ InitializeModel()

bool SUSY::InitializeModel ( )
virtual

Reimplemented from StandardModel.

Reimplemented in GeneralSUSY, MFV, and pMSSM.

Definition at line 68 of file SUSY.cpp.

69{
70 if (!flag_h) mySUSYSpectrum = new SUSYSpectrum(*this);
71 else mySUSYSpectrum = NULL;
72/* BEGIN: REMOVE FROM THE PACKAGE */
73#if FEYNHIGGS
74 if (flag_h) myFH = new FeynHiggsWrapper(*this);
75 else myFH = NULL;
76#endif
77/* END: REMOVE FROM THE PACKAGE */
78 myEWSUSY = new EWSUSY(*this);
79 setFlagStr("Mw", "NORESUM");
82 return(true);
83}
A class for SUSY contributions to the EW precision observables.
Definition: EWSUSY.h:36
void setModelInitialized(bool ModelInitialized)
A set method to fix the failure or success of the initialization of the model.
Definition: Model.h:145
void setModelSUSY()
Definition: Model.h:178
friend class SUSYSpectrum
Friend classes of SUSY class.
Definition: SUSY.h:42
friend class FeynHiggsWrapper
Definition: SUSY.h:44
virtual bool setFlagStr(const std::string name, const std::string value)
A method to set a flag of StandardModel.
virtual bool InitializeModel()
A method to initialize the model.

◆ IsFlag_ch()

bool SUSY::IsFlag_ch ( ) const
inline

Definition at line 108 of file SUSY.h.

109 {
110 return flag_ch;
111 }

◆ IsFlag_FH()

bool SUSY::IsFlag_FH ( ) const
inline

Definition at line 118 of file SUSY.h.

119 {
120 return flag_fh;
121 }

◆ IsFlag_g()

bool SUSY::IsFlag_g ( ) const
inline

Definition at line 103 of file SUSY.h.

104 {
105 return flag_g;
106 }

◆ IsFlag_h()

bool SUSY::IsFlag_h ( ) const
inline

Definition at line 98 of file SUSY.h.

99 {
100 return flag_h;
101 }

◆ IsFlag_ne()

bool SUSY::IsFlag_ne ( ) const
inline

Definition at line 113 of file SUSY.h.

114 {
115 return flag_ne;
116 }

◆ Ml_Q()

double SUSY::Ml_Q ( const lepton  l) const
inline

Definition at line 515 of file SUSY.h.

516 {
517 switch (l) {
518 case ELECTRON:
519 case MU:
520 case TAU:
521 return me_Q[(int)(l - ELECTRON)/2];
522 case NEUTRINO_1:
523 case NEUTRINO_2:
524 case NEUTRINO_3:
525 return mn_Q[((int)(l - NEUTRINO_1))/2];
526 default:
527 throw std::runtime_error("SUSY::Ml_Q(): Error!");
528 }
529 }
@ NEUTRINO_2
Definition: QCD.h:313
@ MU
Definition: QCD.h:314
@ NEUTRINO_3
Definition: QCD.h:315
@ TAU
Definition: QCD.h:316

◆ Mq_Q()

double SUSY::Mq_Q ( const quark  q) const
inline

Definition at line 499 of file SUSY.h.

500 {
501 switch (q) {
502 case UP:
503 case CHARM:
504 case TOP:
505 return mu_Q[(int)(q - UP)/2];
506 case DOWN:
507 case STRANGE:
508 case BOTTOM:
509 return md_Q[((int)(q - DOWN))/2];
510 default:
511 throw std::runtime_error("SUSY::Mq_Q(): Error!");
512 }
513 }
@ BOTTOM
Definition: QCD.h:329
@ STRANGE
Definition: QCD.h:327
@ CHARM
Definition: QCD.h:326

◆ Mw()

const double SUSY::Mw ( ) const
virtual

The W boson mass.

Returns
\(M_W\).

Reimplemented from StandardModel.

Definition at line 402 of file SUSY.cpp.

403{
404 return StandardModel::Mw();
405 //return myEWSUSY->Mw_MSSM();
406}
virtual const double Mw() const
The SM prediction for the -boson mass in the on-shell scheme, .

◆ Mw_dRho()

double SUSY::Mw_dRho ( ) const

The W boson mass in the \(\Delta\rho\) approximation.

Returns
\(M_W\) in the \(\Delta\rho\) approximation.

Definition at line 408 of file SUSY.cpp.

409{
410/* BEGIN: REMOVE FROM THE PACKAGE */
411#if FEYNHIGGS
412 //double delRho = myFH->getFHdeltarho();
413 //std::cout << "DeltaRho = " << delRho << std::endl;
414
415 /* Delta rho approximation */
416 double Mw_SM = StandardModel::Mw();
417 double cW2_SM = Mw_SM*Mw_SM/Mz/Mz;
418 double sW2_SM = 1.0 - cW2_SM;
419 if (IsFlag_FH()) return ( Mw_SM*(1.0 + cW2_SM/2.0/(cW2_SM - sW2_SM)*myFH->getFHdeltarho()) );
420 throw std::runtime_error("SUSY::Mw_dRho(): set Flag_FH to true to use Mw_dRho()");
421#endif
422/* END: REMOVE FROM THE PACKAGE */
423 return 0.;
424}
double Mz
The mass of the boson in GeV.

◆ PostUpdate()

bool SUSY::PostUpdate ( )
virtual

Reimplemented from StandardModel.

Reimplemented in GeneralSUSY, MFV, and pMSSM.

Definition at line 116 of file SUSY.cpp.

117{
118 if(!StandardModel::PostUpdate()) return (false);
119 /* Set the squark and slepton mass matrices and the trilinear-coupling matrices */
120 SetSoftTerms();
122
123 /* use approximate GUT relation if M1 & M2 are zero */
124 if(m1.abs() == 0. && m2.abs() == 0.) {
125 m1.real() = m3/6.;
126 m2.real() = m3/3.;
127 }
128
129 /* Compute Higgs and sparticle spectra with FeynHiggs */
130 if (IsFlag_FH()) {
131/* BEGIN: REMOVE FROM THE PACKAGE */
132#if FEYNHIGGS
133 if(!myFH->SetFeynHiggsPars()) return (false);
134 if(!myFH->CalcHiggsSpectrum()) return (false);
135 if(!myFH->CalcSpectrum()) return (false); /* FH does not calculate Sneutrino masses. */
136#endif
137/* END: REMOVE FROM THE PACKAGE */
138 }
139 else {
140 /* Compute Higgs and sparticle spectra without FeynHiggs */
141 /* sfermions */
142 for (int i = 0; i < 6; i++) {
143 m_sn2(i) = 0.;// heavy decoupled masses for i=3-5
144 m_se2(i) = 0.;
145 m_su2(i) = 0.;
146 m_sd2(i) = 0.;
147 m_sdresum2(i) = 0.;
148 for (int j = 0; j < 6; j++) {
149 /* R: first (second) index for mass (gauge) eigenstates */
150 /* UASf: second (third) index for gauge (mass) eigenstates */
151 Rn.assign(i,j, 0.);
152 Rl.assign(i,j, 0.);
153 Ru.assign(i,j, 0.);
154 Rd.assign(i,j, 0.);
155 Rdresum.assign(i,j, 0.);
156 }
157 }
158
159 /* charginos */
160 for (int i = 0; i < 2; i++) {
161 mch(i) = 0.;
162 for (int j = 0; j < 2; j++) {
163 /* U and V: first (second) index for mass (gauge) eigenstates */
164 /* Ucha and VCha: first (second) index for gauge (mass) eigenstates */
165 U.assign(i,j, 0.);
166 V.assign(i,j, 0.);
167 }
168 }
169
170 /* neutralinos */
171 for (int i = 0; i < 4; i++) {
172 mneu(i) = 0.;
173 for (int j = 0; j < 4; j++)
174 /* N: first (second) index for mass (gauge) eigenstates */
175 /* Zneu: first (second) index for gauge (mass) eigenstates */
176 N.assign(i,j, 0.);
177 }
178
179 if(!mySUSYSpectrum->CalcHiggs(mh,saeff)) return (false);
180 if(!mySUSYSpectrum->CalcChargino(U,V,mch)) return (false);
181 if(!mySUSYSpectrum->CalcNeutralino(N,mneu)) return (false);
182 if(!mySUSYSpectrum->CalcSup(Ru,m_su2)) return (false);
184 if(!mySUSYSpectrum->CalcSdown(Rd,m_sd2)) return (false);
186 if(!mySUSYSpectrum->CalcSneutrino(Rn,m_sn2)) return (false);
188 if(!mySUSYSpectrum->CalcSelectron(Rl,m_se2)) return (false);
190 }
191
192// std::cout<<"muH S = "<<muH<<std::endl;
193
194 /* Set the mass of the SM-like Higgs */
195 /* allowed range for the use of EWSMApproximateFormulae class */
196 if (mh[0] < 10. || mh[0] > 1000.) {
197 std::stringstream out;
198 out << mh[0];
199 throw std::runtime_error("SUSY::PostUpdate(): mh=" + out.str() + " is out of range for EWSMApproximateFormulae");
200 return (false);
201 }
202 mHl = mh[0];
203
204 if( Q_SUSY == -1 || Q_SUSY == 0) Q_SUSY = sqrt( sqrt(m_su2(2) * m_su2(5)) );
205
206 /* For EWSUSY class */
208
209 /* Necessary for updating SUSY and SUSY-derived parameters in SUSYMatching */
210 /* For SUSY Models only: The SM Matching needs to be updated here since StandardModel::PostUpdate() will not do it since the Higgs masses need to be computed. */
211 SUSYM.getObj().updateSMParameters();
212 SUSYM.getObj().updateSUSYParameters();
213
214 SUSYM.getObj().Comp_mySUSYMQ();
215
216 if (IsFlag_ne()) SUSYM.getObj().Comp_VdDNL(0);
217 if (IsFlag_ne()) SUSYM.getObj().Comp_VdDNR(0);
218 if (IsFlag_ch()) SUSYM.getObj().Comp_VdUCL();
219 if (IsFlag_ch()) SUSYM.getObj().Comp_VdUCR(0);
220
221 SUSYM.getObj().Comp_DeltaMd();
222 SUSYM.getObj().Comp_DeltaDL();
223 SUSYM.getObj().Comp_Eps_J();
224 SUSYM.getObj().Comp_Lambda0EpsY();
225 SUSYM.getObj().Comp_mySUSY_CKM();
226
227 if (IsFlag_h()) {
228 SUSYM.getObj().Comp_PHLR();
229 SUSYM.getObj().Comp_VUDHH();
230 SUSYM.getObj().Comp_PHRL();
231 }
232 if (IsFlag_ne()) {
233 SUSYM.getObj().Comp_VdDNL(1);
234 SUSYM.getObj().Comp_VdDNR(1);
235 SUSYM.getObj().Comp_VuUN();
236 }
237 if (IsFlag_ch()) {
238 SUSYM.getObj().Comp_VdUCR(1);
239 SUSYM.getObj().Comp_VuDCL();
240 SUSYM.getObj().Comp_VuDCR();
241 }
242
243 return (true);
244}
void SetRosiekParameters()
Sets parameters in Rosiek's notation.
Definition: EWSUSY.cpp:43
bool IsFlag_ch() const
Definition: SUSY.h:108
bool IsFlag_h() const
Definition: SUSY.h:98
bool IsFlag_ne() const
Definition: SUSY.h:113
virtual void computeYukawas()
Definition: SUSY.cpp:294
virtual void SetSoftTerms()
Definition: SUSY.cpp:337
bool CalcNeutralino(gslpp::matrix< gslpp::complex > &N_i, gslpp::vector< double > &mneu_i)
Computes the neutralino spectrum at tree level.
bool CalcSup(gslpp::matrix< gslpp::complex > &Ru_i, gslpp::vector< double > &m_su2_i)
Computes the up-type squark spectrum at tree level.
bool CalcSelectron(gslpp::matrix< gslpp::complex > &Rl_i, gslpp::vector< double > &m_se2_i)
Computes the charged-slepton spectrum at tree level.
bool CalcChargino(gslpp::matrix< gslpp::complex > &U_i, gslpp::matrix< gslpp::complex > &V_i, gslpp::vector< double > &mch_i)
Computes the chargino spectrum at tree level.
void SortSfermionMasses(gslpp::vector< double > &m_sf2, gslpp::matrix< gslpp::complex > &Rf) const
bool CalcSdown(gslpp::matrix< gslpp::complex > &Rd_i, gslpp::vector< double > &m_sd2_i)
Computes the down-type squark spectrum at tree level.
bool CalcHiggs(double mh[4], gslpp::complex &saeff_i)
Computes the Higgs spectrum at tree level.
bool CalcSneutrino(gslpp::matrix< gslpp::complex > &Rn_i, gslpp::vector< double > &m_sn2_i)
Computes the sneutrino spectrum at tree level.
double mHl
The Higgs mass in GeV.
virtual bool PostUpdate()
The post-update method for StandardModel.

◆ PreUpdate()

bool SUSY::PreUpdate ( )
virtual

Reimplemented from StandardModel.

Reimplemented in GeneralSUSY, MFV, and pMSSM.

Definition at line 93 of file SUSY.cpp.

94{
95 if(!StandardModel::PreUpdate()) return (false);
96
97 return (true);
98}
virtual bool PreUpdate()
The pre-update method for StandardModel.

◆ setFlag()

bool SUSY::setFlag ( const std::string  name,
const bool  value 
)
virtual

Reimplemented from StandardModel.

Definition at line 347 of file SUSY.cpp.

348{
349 bool res = false;
350 if(name.compare("Flag_H") == 0) {
351 flag_h = value;
352 res = true;
353 }
354 else if(name.compare("Flag_g") == 0) {
355 flag_g = value;
356 res = true;
357 }
358 else if(name.compare("Flag_Chi") == 0) {
359 flag_ch = value;
360 res = true;
361 }
362 else if(name.compare("Flag_Chi0") == 0) {
363 flag_ne = value;
364 res = true;
365 }
366 else if(name.compare("Flag_FH") == 0) {
367 flag_fh = value;
368 res = true;
369 }
370 else
371 res = StandardModel::setFlag(name,value);
372
373 return(res);
374}
std::string name
The name of the model.
Definition: Model.h:285
virtual bool setFlag(const std::string name, const bool value)
A method to set a flag of StandardModel.

◆ setParameter()

void SUSY::setParameter ( const std::string  name,
const double &  value 
)
protectedvirtual

A method to set the value of a parameter of SUSY.

Parameters
[in]namename of a model parameter
[in]valuethe value to be assigned to the parameter specified by name

Reimplemented from StandardModel.

Reimplemented in GeneralSUSY, MFV, and pMSSM.

Definition at line 246 of file SUSY.cpp.

247{
248 if (name.compare("m1r") == 0)
249 m1.real() = value;
250 else if (name.compare("m1i") == 0)
251 m1.imag() = value;
252 else if (name.compare("m2r") == 0)
253 m2.real() = value;
254 else if (name.compare("m2i") == 0)
255 m2.imag() = value;
256 else if (name.compare("m3") == 0)
257 m3 = value;
258 else if (name.compare("muHr") == 0)
259 muH.real() = value;
260 else if (name.compare("muHi") == 0)
261 muH.imag() = value;
262 else if (name.compare("mHptree") == 0)
263 mHptree = value;
264 else if (name.compare("tanb") == 0)
265 SetTanb(value);
266 else if (name.compare("Q_SUSY") == 0)
267 Q_SUSY = value;
268 else
270}
virtual void SetTanb(const double tanb)
Definition: SUSY.cpp:283
virtual void setParameter(const std::string name, const double &value)
A method to set the value of a parameter of StandardModel.

◆ SetSoftTerms()

void SUSY::SetSoftTerms ( )
protectedvirtual

Reimplemented in GeneralSUSY, MFV, and pMSSM.

Definition at line 337 of file SUSY.cpp.

338{
339 // MsQ2, MsU2, MsD2, MsL2, MsN2, MsE2, TU, TD, TN and TE are set to 0 in the constructor.
340 // See also GeneralSUSY::SetSoftTerms().
341}

◆ SetTanb()

void SUSY::SetTanb ( const double  tanb)
protectedvirtual

Definition at line 283 of file SUSY.cpp.

284{
285 this->tanb = tanb;
286 if (tanb < 0.)
287 throw std::runtime_error("SUSY::setTanb(): Negative tanb is not allowed");
288
289 /* cosb and sinb are defined to be positive, corresponding to 0<=beta<=pi/2 */
290 cosb = sqrt(1. / (1. + tanb * tanb));
291 sinb = tanb * cosb;
292}

◆ Update()

bool SUSY::Update ( const std::map< std::string, double > &  DPars)
virtual

Reimplemented from StandardModel.

Reimplemented in GeneralSUSY, MFV, and pMSSM.

Definition at line 100 of file SUSY.cpp.

101{
102 if(!PreUpdate()) return (false);
103
104 UpdateError = false;
105
106 for (std::map<std::string, double>::const_iterator it = DPars.begin(); it != DPars.end(); it++)
107 setParameter(it->first, it->second);
108
109 if (UpdateError) return (false);
110
111 if(!PostUpdate()) return (false);
112
113 return (true);
114}
bool UpdateError
A boolean set to false if update is successful.
Definition: Model.h:272
virtual void setParameter(const std::string name, const double &value)
A method to set the value of a parameter of SUSY.
Definition: SUSY.cpp:246
virtual bool PreUpdate()
Definition: SUSY.cpp:93
virtual bool PostUpdate()
Definition: SUSY.cpp:116

◆ v1()

double SUSY::v1 ( ) const
Returns
The Higgs VEV associated with the down-type quarks.

Definition at line 379 of file SUSY.cpp.

380{
381 return (v() * cosb);
382}
const double v() const
The Higgs vacuum expectation value.

◆ v2()

double SUSY::v2 ( ) const
Returns
The Higgs VEV associated with the up-type quarks.

Definition at line 384 of file SUSY.cpp.

385{
386 return (v() * sinb);
387}

Friends And Related Function Documentation

◆ FeynHiggsWrapper

friend class FeynHiggsWrapper
friend

Definition at line 44 of file SUSY.h.

◆ SUSYSpectrum

friend class SUSYSpectrum
friend

Friend classes of SUSY class.

Definition at line 42 of file SUSY.h.

Member Data Documentation

◆ cosb

double SUSY::cosb
protected

Definition at line 572 of file SUSY.h.

◆ flag_ch

bool SUSY::flag_ch
private

Definition at line 593 of file SUSY.h.

◆ flag_fh

bool SUSY::flag_fh
private

Definition at line 593 of file SUSY.h.

◆ flag_g

bool SUSY::flag_g
private

Definition at line 593 of file SUSY.h.

◆ flag_h

bool SUSY::flag_h
private

Definition at line 593 of file SUSY.h.

◆ flag_ne

bool SUSY::flag_ne
private

Definition at line 593 of file SUSY.h.

◆ m1

gslpp::complex SUSY::m1
protected

Definition at line 568 of file SUSY.h.

◆ m2

gslpp::complex SUSY::m2
protected

Definition at line 568 of file SUSY.h.

◆ m3

double SUSY::m3
protected

Definition at line 569 of file SUSY.h.

◆ m_sd2

gslpp::vector<double> SUSY::m_sd2
protected

Definition at line 583 of file SUSY.h.

◆ m_sdresum2

gslpp::vector<double> SUSY::m_sdresum2
protected

Definition at line 583 of file SUSY.h.

◆ m_se2

gslpp::vector<double> SUSY::m_se2
protected

Definition at line 583 of file SUSY.h.

◆ m_sn2

gslpp::vector<double> SUSY::m_sn2
protected

Definition at line 583 of file SUSY.h.

◆ m_su2

gslpp::vector<double> SUSY::m_su2
protected

Definition at line 583 of file SUSY.h.

◆ mch

gslpp::vector<double> SUSY::mch
protected

Definition at line 582 of file SUSY.h.

◆ md_Q

double SUSY::md_Q[3]
protected

Definition at line 589 of file SUSY.h.

◆ me_Q

double SUSY::me_Q[3]
protected

Definition at line 589 of file SUSY.h.

◆ mh

double SUSY::mh[4]
protected

Definition at line 580 of file SUSY.h.

◆ mHp

double SUSY::mHp
protected

Definition at line 580 of file SUSY.h.

◆ mHptree

double SUSY::mHptree
protected

Definition at line 569 of file SUSY.h.

◆ mn_Q

double SUSY::mn_Q[3]
protected

Definition at line 589 of file SUSY.h.

◆ mneu

gslpp::vector<double> SUSY::mneu
protected

Definition at line 582 of file SUSY.h.

◆ msDhat2

gslpp::matrix<gslpp::complex> SUSY::msDhat2
protected

Definition at line 576 of file SUSY.h.

◆ msEhat2

gslpp::matrix<gslpp::complex> SUSY::msEhat2
protected

Definition at line 576 of file SUSY.h.

◆ msLhat2

gslpp::matrix<gslpp::complex> SUSY::msLhat2
protected

Definition at line 576 of file SUSY.h.

◆ msNhat2

gslpp::matrix<gslpp::complex> SUSY::msNhat2
protected

Definition at line 576 of file SUSY.h.

◆ msQhat2

gslpp::matrix<gslpp::complex> SUSY::msQhat2
protected

Definition at line 576 of file SUSY.h.

◆ msUhat2

gslpp::matrix<gslpp::complex> SUSY::msUhat2
protected

Definition at line 576 of file SUSY.h.

◆ mu_Q

double SUSY::mu_Q[3]
protected

Definition at line 589 of file SUSY.h.

◆ muH

gslpp::complex SUSY::muH
protected

Definition at line 568 of file SUSY.h.

◆ myEWSUSY

EWSUSY* SUSY::myEWSUSY
private

Definition at line 595 of file SUSY.h.

◆ myFH

FeynHiggsWrapper* SUSY::myFH
protected

Definition at line 561 of file SUSY.h.

◆ mySUSYSpectrum

SUSYSpectrum* SUSY::mySUSYSpectrum
protected

Definition at line 565 of file SUSY.h.

◆ N

gslpp::matrix<gslpp::complex> SUSY::N
protected

Definition at line 586 of file SUSY.h.

◆ NSUSYvars

const int SUSY::NSUSYvars = 10
static

Definition at line 36 of file SUSY.h.

◆ Q_SUSY

double SUSY::Q_SUSY
protected

Definition at line 569 of file SUSY.h.

◆ Rd

gslpp::matrix<gslpp::complex> SUSY::Rd
protected

Definition at line 586 of file SUSY.h.

◆ Rdresum

gslpp::matrix<gslpp::complex> SUSY::Rdresum
protected

Definition at line 586 of file SUSY.h.

◆ Rl

gslpp::matrix<gslpp::complex> SUSY::Rl
protected

Definition at line 586 of file SUSY.h.

◆ Rn

gslpp::matrix<gslpp::complex> SUSY::Rn
protected

Definition at line 586 of file SUSY.h.

◆ Ru

gslpp::matrix<gslpp::complex> SUSY::Ru
protected

Definition at line 586 of file SUSY.h.

◆ saeff

gslpp::complex SUSY::saeff
protected

Definition at line 581 of file SUSY.h.

◆ sinb

double SUSY::sinb
protected

Definition at line 572 of file SUSY.h.

◆ SUSYM

Matching<SUSYMatching,SUSY> SUSY::SUSYM
mutableprivate

Definition at line 594 of file SUSY.h.

◆ SUSYvars

const std::string SUSY::SUSYvars
static
Initial value:
= {
"m1r", "m1i", "m2r", "m2i", "m3" , "muHr", "muHi", "mHptree", "tanb", "Q_SUSY"
}

Definition at line 37 of file SUSY.h.

◆ tanb

double SUSY::tanb
protected

Definition at line 569 of file SUSY.h.

◆ TDhat

gslpp::matrix<gslpp::complex> SUSY::TDhat
protected

Definition at line 577 of file SUSY.h.

◆ TEhat

gslpp::matrix<gslpp::complex> SUSY::TEhat
protected

Definition at line 577 of file SUSY.h.

◆ TNhat

gslpp::matrix<gslpp::complex> SUSY::TNhat
protected

Definition at line 577 of file SUSY.h.

◆ TUhat

gslpp::matrix<gslpp::complex> SUSY::TUhat
protected

Definition at line 577 of file SUSY.h.

◆ U

gslpp::matrix<gslpp::complex> SUSY::U
protected

Definition at line 586 of file SUSY.h.

◆ V

gslpp::matrix<gslpp::complex> SUSY::V
protected

Definition at line 586 of file SUSY.h.


The documentation for this class was generated from the following files: