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unitarityNLOev8 Class Reference

Fourth eigenvalue of the even 01 block (equivalent to the second without wavefunction renormalization). More...

#include <unitarity.h>

+ Inheritance diagram for unitarityNLOev8:

Detailed Description

Fourth eigenvalue of the even 01 block (equivalent to the second without wavefunction renormalization).

Definition at line 918 of file unitarity.h.

Public Member Functions

double computeThValue ()
 
 unitarityNLOev8 (const StandardModel &SM_i)
 unitarityNLOev8 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

◆ unitarityNLOev8()

unitarityNLOev8::unitarityNLOev8 ( const StandardModel SM_i)

unitarityNLOev8 constructor.

Definition at line 1434 of file unitarity.cpp.

1435: ThObservable(SM_i),myTHDM(static_cast<const THDM&> (SM_i))
1436{}
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:928

Member Function Documentation

◆ computeThValue()

double unitarityNLOev8::computeThValue ( )
virtual

Implements ThObservable.

Definition at line 1438 of file unitarity.cpp.

1439{
1440 double YtQ = myTHDM.getMyTHDMCache()->Ytop_at_Q;
1441 double Yb1Q = myTHDM.getMyTHDMCache()->Ybottom1_at_Q;
1442 double Yb2Q = myTHDM.getMyTHDMCache()->Ybottom2_at_Q;
1443 double Ytau1Q = myTHDM.getMyTHDMCache()->Ytau1_at_Q;
1444 double Ytau2Q = myTHDM.getMyTHDMCache()->Ytau2_at_Q;
1445 double la1Q = myTHDM.getMyTHDMCache()->lambda1_at_Q;
1446 double la2Q = myTHDM.getMyTHDMCache()->lambda2_at_Q;
1447 double la3Q = myTHDM.getMyTHDMCache()->lambda3_at_Q;
1448 double la4Q = myTHDM.getMyTHDMCache()->lambda4_at_Q;
1449 double la5Q = myTHDM.getMyTHDMCache()->lambda5_at_Q;
1450 double WFRc1 = myTHDM.getMyTHDMCache()->WFRcomb1;
1451 double WFRc2 = myTHDM.getMyTHDMCache()->WFRcomb2;
1452
1453 double betalambda1 = 6.0*la1Q*la1Q + 2.0*la3Q*la3Q + 2.0*la3Q*la4Q + la4Q*la4Q + la5Q*la5Q
1454 + 6.0*la1Q*Yb1Q*Yb1Q + 2.0*la1Q*Ytau1Q*Ytau1Q
1455 - 6.0*Yb1Q*Yb1Q*Yb1Q*Yb1Q - 2.0*Ytau1Q*Ytau1Q*Ytau1Q*Ytau1Q;
1456 double betalambda2 = 6.0*la2Q*la2Q + 2.0*la3Q*la3Q + 2.0*la3Q*la4Q + la4Q*la4Q + la5Q*la5Q
1457 + 6.0*la2Q*Yb2Q*Yb2Q + 2.0*la2Q*Ytau2Q*Ytau2Q + 6.0*la2Q*YtQ*YtQ
1458 - 6.0*Yb2Q*Yb2Q*Yb2Q*Yb2Q - 2.0*Ytau2Q*Ytau2Q*Ytau2Q*Ytau2Q - 6.0*YtQ*YtQ*YtQ*YtQ;
1459 double betalambda4 = la1Q*la4Q + la2Q*la4Q + 4.0*la3Q*la4Q + 2.0*la4Q*la4Q + 4.0*la5Q*la5Q
1460 + 3.0*la4Q*Yb1Q*Yb1Q + 3.0*la4Q*Yb2Q*Yb2Q + la4Q*Ytau1Q*Ytau1Q + la4Q*Ytau2Q*Ytau2Q + 3.0*la4Q*YtQ*YtQ
1461 - 2.0*Ytau1Q*Ytau1Q*Ytau2Q*Ytau2Q - 6.0*Yb1Q*Yb1Q*(Yb2Q*Yb2Q - YtQ*YtQ);
1462
1463 double uniNLO6a = -la1Q/(16.0*M_PI);
1464 double uniNLO6b = 3.0*betalambda1/(256.0*M_PI*M_PI*M_PI);
1465 gslpp::complex uniNLO6c = (gslpp::complex::i()*M_PI-1.0)*(la1Q*la1Q+la4Q*la4Q)/(256.0*M_PI*M_PI*M_PI);
1466 gslpp::complex uniNLO6d = -la1Q/(512.0*M_PI*M_PI*M_PI) * WFRc1;
1467
1468 double uniNLO7a = -la2Q/(16.0*M_PI);
1469 double uniNLO7b = 3.0*betalambda2/(256.0*M_PI*M_PI*M_PI);
1470 gslpp::complex uniNLO7c = (gslpp::complex::i()*M_PI-1.0)*(la2Q*la2Q+la4Q*la4Q)/(256.0*M_PI*M_PI*M_PI);
1471 gslpp::complex uniNLO7d = -la2Q/(512.0*M_PI*M_PI*M_PI) * (-WFRc1+2.0*WFRc2);
1472
1473 double uniNLO9a = -la4Q/(16.0*M_PI);
1474 double uniNLO9b = 3.0*betalambda4/(256.0*M_PI*M_PI*M_PI);
1475 gslpp::complex uniNLO9c = (gslpp::complex::i()*M_PI-1.0)*(la1Q+la2Q)*la4Q/(256.0*M_PI*M_PI*M_PI);
1476 gslpp::complex uniNLO9d = -la5Q/(512.0*M_PI*M_PI*M_PI) * WFRc2;
1477
1478 gslpp::complex uniA=uniNLO6a+uniNLO6b+uniNLO6c+uniNLO6d;
1479 gslpp::complex uniB=uniNLO7a+uniNLO7b+uniNLO7c+uniNLO7d;
1480 gslpp::complex uniC=uniNLO9a+uniNLO9b+uniNLO9c+uniNLO9d;
1481
1482 return (0.5*(uniA+uniB-sqrt((uniA-uniB)*(uniA-uniB)+4.0*uniC*uniC)) - 0.5*gslpp::complex::i()).abs();
1483}
THDMcache * getMyTHDMCache() const
A method get the THDMCache.
Definition: THDM.h:213
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& unitarityNLOev8::myTHDM
private

Definition at line 928 of file unitarity.h.


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