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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src
EvtGenModels
EvtHQET2.cpp
Go to the documentation of this file.
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/***********************************************************************
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* Copyright 1998-2020 CERN for the benefit of the EvtGen authors *
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* *
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* This file is part of EvtGen. *
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* *
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* EvtGen is free software: you can redistribute it and/or modify *
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* it under the terms of the GNU General Public License as published by *
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* the Free Software Foundation, either version 3 of the License, or *
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* (at your option) any later version. *
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* *
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* EvtGen is distributed in the hope that it will be useful, *
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* but WITHOUT ANY WARRANTY; without even the implied warranty of *
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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* GNU General Public License for more details. *
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* *
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* You should have received a copy of the GNU General Public License *
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* along with EvtGen. If not, see <https://www.gnu.org/licenses/>. *
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***********************************************************************/
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#include "
EvtGenModels/EvtHQET2.hh
"
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#include "
EvtGenBase/EvtGenKine.hh
"
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#include "
EvtGenBase/EvtPDL.hh
"
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#include "
EvtGenBase/EvtParticle.hh
"
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#include "
EvtGenBase/EvtReport.hh
"
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#include "
EvtGenBase/EvtSemiLeptonicScalarAmp.hh
"
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#include "
EvtGenBase/EvtSemiLeptonicVectorAmp.hh
"
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#include "
EvtGenModels/EvtHQET2FF.hh
"
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#include <assert.h>
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#include <stdlib.h>
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#include <string>
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using
std::endl;
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std::string
EvtHQET2::getName
()
const
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{
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return
"HQET2"
;
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}
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EvtDecayBase
*
EvtHQET2::clone
()
const
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{
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return
new
EvtHQET2
;
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}
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void
EvtHQET2::decay
(
EvtParticle
* p )
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{
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p->
initializePhaseSpace
(
getNDaug
(),
getDaugs
() );
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m_calcamp
->CalcAmp( p,
m_amp2
,
m_hqetffmodel
.get() );
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}
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void
EvtHQET2::initProbMax
()
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{
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EvtId
parnum, mesnum, lnum, nunum;
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parnum =
getParentId
();
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mesnum =
getDaug
( 0 );
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lnum =
getDaug
( 1 );
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nunum =
getDaug
( 2 );
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double
mymaxprob =
m_calcamp
->CalcMaxProb( parnum, mesnum, lnum, nunum,
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m_hqetffmodel
.get() );
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setProbMax
( mymaxprob );
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}
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void
EvtHQET2::init
()
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{
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checkNDaug
( 3 );
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//We expect the parent to be a scalar
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//and the daughters to be X lepton neutrino
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checkSpinParent
(
EvtSpinType::SCALAR
);
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checkSpinDaughter
( 1,
EvtSpinType::DIRAC
);
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checkSpinDaughter
( 2,
EvtSpinType::NEUTRINO
);
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EvtSpinType::spintype
d1type =
EvtPDL::getSpinType
(
getDaug
( 0 ) );
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if
( d1type ==
EvtSpinType::SCALAR
) {
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if
(
getNArg
() == 2 ) {
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m_hqetffmodel
= std::make_unique<EvtHQET2FF>(
getArg
( 0 ),
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getArg
( 1 ) );
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m_calcamp
= std::make_unique<EvtSemiLeptonicScalarAmp>();
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}
else
if
(
getNArg
() == 3 ) {
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m_hqetffmodel
= std::make_unique<EvtHQET2FF>(
getArg
( 0 ),
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getArg
( 1 ),
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getArg
( 2 ) );
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m_calcamp
= std::make_unique<EvtSemiLeptonicScalarAmp>();
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}
else
{
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EvtGenReport
(
EVTGEN_ERROR
,
"EvtGen"
)
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<<
"HQET2 model for scalar meson daughters needs 2 arguments for normal mode or 3 for extended. Sorry."
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<< endl;
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::abort();
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}
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}
else
if
( d1type ==
EvtSpinType::VECTOR
) {
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if
(
getNArg
() == 4 ) {
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m_hqetffmodel
= std::make_unique<EvtHQET2FF>(
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getArg
( 0 ),
getArg
( 1 ),
getArg
( 2 ),
getArg
( 3 ) );
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m_calcamp
= std::make_unique<EvtSemiLeptonicVectorAmp>();
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}
else
if
(
getNArg
() == 5 ) {
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m_hqetffmodel
= std::make_unique<EvtHQET2FF>(
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getArg
( 0 ),
getArg
( 1 ),
getArg
( 2 ),
getArg
( 3 ),
getArg
( 4 ) );
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m_calcamp
= std::make_unique<EvtSemiLeptonicVectorAmp>();
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}
else
{
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EvtGenReport
(
EVTGEN_ERROR
,
"EvtGen"
)
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<<
"HQET2 model for vector meson daughtersneeds 4 arguments for normal mode or 5 for extended. Sorry."
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<< endl;
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::abort();
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}
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}
else
{
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EvtGenReport
(
EVTGEN_ERROR
,
"EvtGen"
)
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<<
"HQET2 model handles only scalar and vector meson daughters. Sorry."
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<< endl;
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::abort();
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}
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}
EvtGenKine.hh
EvtHQET2FF.hh
EvtHQET2.hh
EvtPDL.hh
EvtParticle.hh
EvtReport.hh
EvtGenReport
std::ostream & EvtGenReport(EvtGenSeverity severity, const char *facility=nullptr)
Definition
EvtReport.cpp:32
EVTGEN_ERROR
@ EVTGEN_ERROR
Definition
EvtReport.hh:49
EvtSemiLeptonicScalarAmp.hh
EvtSemiLeptonicVectorAmp.hh
EvtDecayAmp::m_amp2
EvtAmp m_amp2
Definition
EvtDecayAmp.hh:73
EvtDecayBase::checkSpinDaughter
void checkSpinDaughter(int d1, EvtSpinType::spintype sp)
Definition
EvtDecayBase.cpp:547
EvtDecayBase::EvtDecayBase
EvtDecayBase()=default
EvtDecayBase::getNDaug
int getNDaug() const
Definition
EvtDecayBase.hh:64
EvtDecayBase::checkSpinParent
void checkSpinParent(EvtSpinType::spintype sp)
Definition
EvtDecayBase.cpp:534
EvtDecayBase::getNArg
int getNArg() const
Definition
EvtDecayBase.hh:67
EvtDecayBase::getArg
double getArg(unsigned int j)
Definition
EvtDecayBase.cpp:578
EvtDecayBase::setProbMax
void setProbMax(double prbmx)
Definition
EvtDecayBase.cpp:295
EvtDecayBase::getParentId
EvtId getParentId() const
Definition
EvtDecayBase.hh:60
EvtDecayBase::getDaug
EvtId getDaug(int i) const
Definition
EvtDecayBase.hh:66
EvtDecayBase::checkNDaug
void checkNDaug(int d1, int d2=-1)
Definition
EvtDecayBase.cpp:516
EvtDecayBase::getDaugs
const EvtId * getDaugs() const
Definition
EvtDecayBase.hh:65
EvtHQET2
Definition
EvtHQET2.hh:35
EvtHQET2::m_calcamp
std::unique_ptr< EvtSemiLeptonicAmp > m_calcamp
Definition
EvtHQET2.hh:46
EvtHQET2::initProbMax
void initProbMax() override
Definition
EvtHQET2.cpp:53
EvtHQET2::clone
EvtDecayBase * clone() const override
Definition
EvtHQET2.cpp:42
EvtHQET2::decay
void decay(EvtParticle *p) override
Definition
EvtHQET2.cpp:47
EvtHQET2::init
void init() override
Definition
EvtHQET2.cpp:68
EvtHQET2::m_hqetffmodel
std::unique_ptr< EvtSemiLeptonicFF > m_hqetffmodel
Definition
EvtHQET2.hh:45
EvtHQET2::getName
std::string getName() const override
Definition
EvtHQET2.cpp:37
EvtId
Definition
EvtId.hh:27
EvtPDL::getSpinType
static EvtSpinType::spintype getSpinType(EvtId i)
Definition
EvtPDL.cpp:371
EvtParticle
Definition
EvtParticle.hh:45
EvtParticle::initializePhaseSpace
double initializePhaseSpace(size_t numdaughter, const EvtId *daughters, bool forceResetMasses=false, double poleSize=-1., int whichTwo1=0, int whichTwo2=1)
Definition
EvtParticle.cpp:1100
EvtSpinType::spintype
spintype
Definition
EvtSpinType.hh:29
EvtSpinType::NEUTRINO
@ NEUTRINO
Definition
EvtSpinType.hh:35
EvtSpinType::SCALAR
@ SCALAR
Definition
EvtSpinType.hh:30
EvtSpinType::DIRAC
@ DIRAC
Definition
EvtSpinType.hh:33
EvtSpinType::VECTOR
@ VECTOR
Definition
EvtSpinType.hh:31
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