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unitarityRp16 Class Reference

#include <unitarity.h>

+ Inheritance diagram for unitarityRp16:

Detailed Description

Definition at line 1422 of file unitarity.h.

Public Member Functions

double computeThValue ()
 
 unitarityRp16 (const StandardModel &SM_i)
 unitarityRp16 constructor. More...
 
- Public Member Functions inherited from ThObservable
double getBinMax ()
 A get method to get the maximum value of the bin. More...
 
double getBinMin ()
 A get method to get the minimum value of the bin. More...
 
const StandardModelgetModel ()
 A get method to get the model. More...
 
const std::vector< std::string > getParametersForObservable ()
 A get method to get the parameters for the specific observable. More...
 
void setBinMax (double max)
 A set method to set the maximum value of the bin. More...
 
void setBinMin (double min)
 A set method to set the minimum value of the bin. More...
 
void setParametersForObservable (std::vector< std::string > parametersForObservable_i)
 A set method to get the parameters for the specific observable. More...
 
 ThObservable (const StandardModel &SM_i)
 Constructor. More...
 
 ThObservable (const ThObservable &orig)
 The copy constructor. More...
 
virtual ~ThObservable ()
 The default destructor. More...
 

Private Attributes

const THDMmyTHDM
 

Additional Inherited Members

- Protected Attributes inherited from ThObservable
double max
 the bin maximum. More...
 
double min
 The bin minimum. More...
 
std::vector< std::string > parametersForObservable
 a vector of parameter namesfor the specific observable More...
 
const StandardModelSM
 A reference to an object of StandardMode class. More...
 

Constructor & Destructor Documentation

◆ unitarityRp16()

unitarityRp16::unitarityRp16 ( const StandardModel SM_i)

unitarityRp16 constructor.

Definition at line 2810 of file unitarity.cpp.

2811: ThObservable(SM_i),myTHDM(static_cast<const THDM&> (SM_i))
2812{}
A base class for symmetric Two-Higgs-Doublet models.
Definition: THDM.h:120
ThObservable(const StandardModel &SM_i)
Constructor.
Definition: ThObservable.h:32
const THDM & myTHDM
Definition: unitarity.h:1432

Member Function Documentation

◆ computeThValue()

double unitarityRp16::computeThValue ( )
virtual

Implements ThObservable.

Definition at line 2814 of file unitarity.cpp.

2815{
2816 double YtQ = myTHDM.getMyTHDMCache()->Ytop_at_Q;
2817 double Yb1Q = myTHDM.getMyTHDMCache()->Ybottom1_at_Q;
2818 double Yb2Q = myTHDM.getMyTHDMCache()->Ybottom2_at_Q;
2819 double Ytau1Q = myTHDM.getMyTHDMCache()->Ytau1_at_Q;
2820 double Ytau2Q = myTHDM.getMyTHDMCache()->Ytau2_at_Q;
2821 double la1Q = myTHDM.getMyTHDMCache()->lambda1_at_Q;
2822 double la2Q = myTHDM.getMyTHDMCache()->lambda2_at_Q;
2823 double la3Q = myTHDM.getMyTHDMCache()->lambda3_at_Q;
2824 double la4Q = myTHDM.getMyTHDMCache()->lambda4_at_Q;
2825 double la5Q = myTHDM.getMyTHDMCache()->lambda5_at_Q;
2826 double WFRc1 = myTHDM.getMyTHDMCache()->WFRcomb1;
2827 double WFRc2 = myTHDM.getMyTHDMCache()->WFRcomb2;
2828 double Rpeps = myTHDM.getMyTHDMCache()->Rpeps;
2829
2830 double betalambda1 = 6.0*la1Q*la1Q + 2.0*la3Q*la3Q + 2.0*la3Q*la4Q + la4Q*la4Q + la5Q*la5Q
2831 + 6.0*la1Q*Yb1Q*Yb1Q + 2.0*la1Q*Ytau1Q*Ytau1Q
2832 - 6.0*Yb1Q*Yb1Q*Yb1Q*Yb1Q - 2.0*Ytau1Q*Ytau1Q*Ytau1Q*Ytau1Q;
2833 double betalambda2 = 6.0*la2Q*la2Q + 2.0*la3Q*la3Q + 2.0*la3Q*la4Q + la4Q*la4Q + la5Q*la5Q
2834 + 6.0*la2Q*Yb2Q*Yb2Q + 2.0*la2Q*Ytau2Q*Ytau2Q + 6.0*la2Q*YtQ*YtQ
2835 - 6.0*Yb2Q*Yb2Q*Yb2Q*Yb2Q - 2.0*Ytau2Q*Ytau2Q*Ytau2Q*Ytau2Q - 6.0*YtQ*YtQ*YtQ*YtQ;
2836 double betalambda5 = la5Q*(la1Q + la2Q + 4.0*la3Q + 6.0*la4Q)
2837 + 3.0*la5Q*Yb1Q*Yb1Q + la5Q*Ytau1Q*Ytau1Q + la5Q*(3.0*Yb2Q*Yb2Q + Ytau2Q*Ytau2Q + 3.0*YtQ*YtQ)
2838 - 6.0*Yb1Q*Yb1Q*Yb2Q*Yb2Q - 2.0*Ytau1Q*Ytau1Q*Ytau2Q*Ytau2Q;
2839
2840 double uniNLO18a = -la1Q/(16.0*M_PI);
2841 double uniNLO18b = 3.0*betalambda1/(256.0*M_PI*M_PI*M_PI);
2842 gslpp::complex uniNLO18c = (gslpp::complex::i()*M_PI-1.0)*(la1Q*la1Q+la5Q*la5Q)/(256.0*M_PI*M_PI*M_PI);
2843 gslpp::complex uniNLO18d = -la1Q/(512.0*M_PI*M_PI*M_PI) * WFRc1;
2844
2845 double uniNLO19a = -la2Q/(16.0*M_PI);
2846 double uniNLO19b = 3.0*betalambda2/(256.0*M_PI*M_PI*M_PI);
2847 gslpp::complex uniNLO19c = (gslpp::complex::i()*M_PI-1.0)*(la2Q*la2Q+la5Q*la5Q)/(256.0*M_PI*M_PI*M_PI);
2848 gslpp::complex uniNLO19d = -la2Q/(512.0*M_PI*M_PI*M_PI) * (-WFRc1+2.0*WFRc2);
2849
2850 double uniNLO20a = -la5Q/(16.0*M_PI);
2851 double uniNLO20b = 3.0*betalambda5/(256.0*M_PI*M_PI*M_PI);
2852 gslpp::complex uniNLO20c = (gslpp::complex::i()*M_PI-1.0)*(la1Q+la2Q)*la5Q/(256.0*M_PI*M_PI*M_PI);
2853 gslpp::complex uniNLO20d = -la4Q/(512.0*M_PI*M_PI*M_PI) * WFRc2;
2854
2855 gslpp::complex uniA=uniNLO18a+uniNLO18b+uniNLO18c+uniNLO18d;
2856 gslpp::complex uniB=uniNLO19a+uniNLO19b+uniNLO19c+uniNLO19d;
2857 gslpp::complex uniC=uniNLO20a+uniNLO20b+uniNLO20c+uniNLO20d;
2858
2859 double Rp=0.01;
2860 double a0LO = uniNLO18a+uniNLO19a-sqrt((uniNLO18a-uniNLO19a)*(uniNLO18a-uniNLO19a)+4.0*uniNLO20a*uniNLO20a);
2861 if(fabs(a0LO)>Rpeps)
2862 {
2863 Rp = ((uniA+uniB-sqrt((uniA-uniB)*(uniA-uniB)+4.0*uniC*uniC))-a0LO).abs()/fabs(a0LO);
2864 }
2865
2866 return Rp;
2867}
THDMcache * getMyTHDMCache() const
A method get the THDMCache.
Definition: THDM.h:213
double Rpeps
Definition: THDMcache.h:3412
double Ytau1_at_Q
Definition: THDMcache.h:3398
double Ybottom2_at_Q
Definition: THDMcache.h:3397
double lambda2_at_Q
Definition: THDMcache.h:3404
double Ytop_at_Q
Definition: THDMcache.h:3395
double lambda1_at_Q
Definition: THDMcache.h:3403
double lambda3_at_Q
Definition: THDMcache.h:3405
double lambda4_at_Q
Definition: THDMcache.h:3406
double Ytau2_at_Q
Definition: THDMcache.h:3399
double lambda5_at_Q
Definition: THDMcache.h:3407
double WFRcomb1
Definition: THDMcache.h:3408
double Ybottom1_at_Q
Definition: THDMcache.h:3396
double WFRcomb2
Definition: THDMcache.h:3409

Member Data Documentation

◆ myTHDM

const THDM& unitarityRp16::myTHDM
private

Definition at line 1432 of file unitarity.h.


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