EvtGen 2.2.0
Monte Carlo generator of particle decays, in particular the weak decays of heavy flavour particles such as B mesons.
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Evtbs2llGammaISRFSR.cpp
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1
2/***********************************************************************
3* Copyright 1998-2020 CERN for the benefit of the EvtGen authors *
4* *
5* This file is part of EvtGen. *
6* *
7* EvtGen is free software: you can redistribute it and/or modify *
8* it under the terms of the GNU General Public License as published by *
9* the Free Software Foundation, either version 3 of the License, or *
10* (at your option) any later version. *
11* *
12* EvtGen is distributed in the hope that it will be useful, *
13* but WITHOUT ANY WARRANTY; without even the implied warranty of *
14* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
15* GNU General Public License for more details. *
16* *
17* You should have received a copy of the GNU General Public License *
18* along with EvtGen. If not, see <https://www.gnu.org/licenses/>. *
19***********************************************************************/
20
22
24#include "EvtGenBase/EvtPDL.hh"
27
31
32#include <stdlib.h>
33#include <string.h>
34
41
42// The module name specification
44{
45 return "BSTOGLLISRFSR";
46}
47
48// The implementation of the clone() method
53
54// The inicialization of the decay model
55//
56// Tn the our model we have are following 4 arguments:
57//
58// mu - the scale parameter, GeV;
59// Nf - number of "effective" flavors (for b-quark Nf=5);
60// sr - state radiation type:
61// = 0 ISR only,
62// = 1 FSR only,
63// = 2 ISR + FSR (== BSTOGLLMNT model);
64// res_swch - resonant switching parametr:
65// = 0 the resonant contribution switched OFF,
66// = 1 the resonant contribution switched ON;
67// ias - switching parametr for \alpha_s(M_Z) value:
68// = 0 PDG 1sigma minimal alpha_s(M_Z),
69// = 1 PDG average value alpha_s(M_Z),
70// = 2 PDG 1sigma maximal alpha_s(M_Z).
71// Egamma_min - photon energy cut, GeV;
72// Wolfenstein parameterization for CKM matrix
73// CKM_A, CKM_lambda, CKM_barrho, CKM_bareta
74//
76{
77 // check that there are 10 arguments
78 checkNArg( 10, 11 );
79 // check that there are 3 daughteres
80 checkNDaug( 3 );
81
82 // We expect that the parent to be a scalar (B-meson)
83 // and the daughters to be Gamma, l^+ and l^-
85
86 // We expect that the first daughter is the photon
88
89 if ( !( photontype == EvtSpinType::PHOTON ) ) {
90 EvtGenReport( EVTGEN_ERROR, "EvtGen" )
91 << "Evtbs2llGammaISRFSR generator expected "
92 << " a PHOTON 1st daughter, found:"
93 << EvtPDL::name( getDaug( 0 ) ).c_str() << std::endl;
94 EvtGenReport( EVTGEN_ERROR, "EvtGen" )
95 << "Will terminate execution!" << std::endl;
96 ::abort();
97 }
98
99 // We expect that the second and third daughters
100 // are the ell+ and ell- == DIRAC
103
106 if ( photontype == EvtSpinType::PHOTON ) {
108 } else {
109 EvtGenReport( EVTGEN_ERROR, "EvtGen" )
110 << "The init()-function in the Evtbs2llGammaISRFSR generator:"
111 << "The absence in the radiative decay!" << std::endl;
112 ::abort();
113 }
114}
115
116// Set the maximum probability of the decay
117// differencial distribution d^2\Gamma/d\hat s d\cos\theta
119{
120 double mymaxprob = -10.0; // maximum of the probability
121
122 EvtId parnum, photnum, l1num, l2num;
123
124 parnum = getParentId();
125 photnum = getDaug( 0 );
126 l1num = getDaug( 1 );
127 l2num = getDaug( 2 );
128
129 double mu = getArg( 0 ); // the scale parameter
130 int Nf = (int)getArg( 1 ); // number of "effective" flavors
131 int sr = (int)getArg( 2 ); // state radiation type
132 int res_swch = (int)getArg( 3 ); // resonant switching parametr
133 int ias = (int)getArg( 4 ); // switching parametr for \alpha_s(M_Z)
134 double Egamma_min = getArg( 5 ); // photon energy cut
135 double CKM_A = getArg( 6 );
136 double CKM_lambda = getArg( 7 );
137 double CKM_barrho = getArg( 8 );
138 double CKM_bareta = getArg( 9 );
139 double mumumass_min = 0.;
140 if ( getNArg() == 11 )
141 mumumass_min = getArg( 10 );
142
143 mymaxprob = m_calcamp->CalcMaxProb( parnum, photnum, l1num, l2num,
144 m_mntffmodel, m_wilscoeff, mu, Nf, sr,
145 res_swch, ias, Egamma_min, CKM_A,
146 CKM_lambda, CKM_barrho, CKM_bareta,
147 mumumass_min );
148
149 if ( mymaxprob <= 0.0 ) {
150 EvtGenReport( EVTGEN_ERROR, "EvtGen" )
151 << "The function void Evtbs2llGammaISRFSR::initProbMax()"
152 << "\n Unexpected value of the probability maximum!"
153 << "\n mymaxprob = " << mymaxprob << std::endl;
154 ::abort();
155 }
156
157 setProbMax( mymaxprob );
158}
159
161{
162 double mu = getArg( 0 ); // the scale parameter
163 int Nf = (int)getArg( 1 ); // number of "effective" flavors
164 int sr = (int)getArg( 2 ); // state radiation type
165 int res_swch = (int)getArg( 3 ); // resonant switching parametr
166 int ias = (int)getArg( 4 ); // switching parametr for \alpha_s(M_Z)
167 double Egamma_min = getArg( 5 ); // photon energy cut
168 double CKM_A = getArg( 6 );
169 double CKM_lambda = getArg( 7 );
170 double CKM_barrho = getArg( 8 );
171 double CKM_bareta = getArg( 9 );
172 double mumumass_min = 0.;
173 if ( getNArg() == 11 )
174 mumumass_min = getArg( 10 );
175
177
178 // The class "Evtbs2llGammaFFMNT" is the derived class of the
179 // class "Evtbs2llGammaFF" (see the file "Evtbs2llGammaFF.hh")
180 m_calcamp->CalcAmp( p, m_amp2, m_mntffmodel, m_wilscoeff, mu, Nf, sr,
181 res_swch, ias, Egamma_min, CKM_A, CKM_lambda,
182 CKM_barrho, CKM_bareta, mumumass_min );
183
184 // EvtGenReport(EVTGEN_NOTICE,"EvtGen") << "\n "
185 //<< "\n The function Evtbs2llGammaISRFSR::decay(...) passed with arguments:"
186 // << "\n mu = " << mu << " Nf =" << Nf
187 // << "\n res_swch = " << res_swch
188 // << "\n sr = " << sr << "\n ias = " << ias
189 // << "\n Egamma_min =" << Egamma_min
190 // << "\n CKM_A = " << CKM_A
191 // << "\n CKM_lambda = " << CKM_lambda
192 // << "\n CKM_barrho = " << CKM_barrho
193 // << "\n CKM_bareta = " << CKM_bareta
194 // << "\n "
195 // << std::endl;
196}
std::ostream & EvtGenReport(EvtGenSeverity severity, const char *facility=nullptr)
Definition EvtReport.cpp:32
@ EVTGEN_ERROR
Definition EvtReport.hh:49
EvtAmp m_amp2
void checkSpinDaughter(int d1, EvtSpinType::spintype sp)
EvtDecayBase()=default
int getNDaug() const
void checkSpinParent(EvtSpinType::spintype sp)
int getNArg() const
double getArg(unsigned int j)
void setProbMax(double prbmx)
EvtId getParentId() const
EvtId getDaug(int i) const
void checkNDaug(int d1, int d2=-1)
void checkNArg(int a1, int a2=-1, int a3=-1, int a4=-1)
const EvtId * getDaugs() const
Definition EvtId.hh:27
static EvtSpinType::spintype getSpinType(EvtId i)
Definition EvtPDL.cpp:371
static std::string name(EvtId i)
Definition EvtPDL.cpp:376
double initializePhaseSpace(size_t numdaughter, const EvtId *daughters, bool forceResetMasses=false, double poleSize=-1., int whichTwo1=0, int whichTwo2=1)
EvtDecayBase * clone() const override
Evtbs2llGammaFF * m_mntffmodel
EvtbTosllWilsCoeffNLO * m_wilscoeff
void decay(EvtParticle *p) override
std::string getName() const override
Evtbs2llGammaISRFSRAmp * m_calcamp