Geant4
10.7.0
Toolkit for the simulation of the passage of particles through matter
Loading...
Searching...
No Matches
G4INCLNpiToLK2piChannel.cc
Go to the documentation of this file.
1
//
2
// ********************************************************************
3
// * License and Disclaimer *
4
// * *
5
// * The Geant4 software is copyright of the Copyright Holders of *
6
// * the Geant4 Collaboration. It is provided under the terms and *
7
// * conditions of the Geant4 Software License, included in the file *
8
// * LICENSE and available at http://cern.ch/geant4/license . These *
9
// * include a list of copyright holders. *
10
// * *
11
// * Neither the authors of this software system, nor their employing *
12
// * institutes,nor the agencies providing financial support for this *
13
// * work make any representation or warranty, express or implied, *
14
// * regarding this software system or assume any liability for its *
15
// * use. Please see the license in the file LICENSE and URL above *
16
// * for the full disclaimer and the limitation of liability. *
17
// * *
18
// * This code implementation is the result of the scientific and *
19
// * technical work of the GEANT4 collaboration. *
20
// * By using, copying, modifying or distributing the software (or *
21
// * any work based on the software) you agree to acknowledge its *
22
// * use in resulting scientific publications, and indicate your *
23
// * acceptance of all terms of the Geant4 Software license. *
24
// ********************************************************************
25
//
26
// INCL++ intra-nuclear cascade model
27
// Alain Boudard, CEA-Saclay, France
28
// Joseph Cugnon, University of Liege, Belgium
29
// Jean-Christophe David, CEA-Saclay, France
30
// Pekka Kaitaniemi, CEA-Saclay, France, and Helsinki Institute of Physics, Finland
31
// Sylvie Leray, CEA-Saclay, France
32
// Davide Mancusi, CEA-Saclay, France
33
//
34
#define INCLXX_IN_GEANT4_MODE 1
35
36
#include "
globals.hh
"
37
38
#include "
G4INCLNpiToLK2piChannel.hh
"
39
#include "
G4INCLKinematicsUtils.hh
"
40
#include "
G4INCLBinaryCollisionAvatar.hh
"
41
#include "
G4INCLRandom.hh
"
42
#include "
G4INCLGlobals.hh
"
43
#include "
G4INCLLogger.hh
"
44
#include <algorithm>
45
#include "
G4INCLPhaseSpaceGenerator.hh
"
46
47
namespace
G4INCL
{
48
49
const
G4double
NpiToLK2piChannel::angularSlope = 6.;
// What is the exact effect? Sould be check
50
51
NpiToLK2piChannel::NpiToLK2piChannel
(
Particle
*p1,
Particle
*p2)
52
: particle1(p1), particle2(p2)
53
{}
54
55
NpiToLK2piChannel::~NpiToLK2piChannel
(){}
56
57
void
NpiToLK2piChannel::fillFinalState
(
FinalState
*fs) {
58
59
// p pi+ -> L K+ pi+ pi0 (1)
60
// p pi+ -> L K0 pi+ pi+ (1)
61
//
62
// p pi0 -> L K+ pi0 pi0 (1/4)
63
// p pi0 -> L K+ pi+ pi- (1)
64
// p pi0 -> L K0 pi+ pi0 (1/2)
65
//
66
// p pi- -> L K+ pi0 pi- (1)
67
// p pi- -> L K0 pi+ pi- (1)
68
// p pi- -> L K0 pi0 pi0 (1/2)
69
70
Particle
*nucleon;
71
Particle
*pion;
72
73
if
(particle1->
isNucleon
()){
74
nucleon = particle1;
75
pion = particle2;
76
}
77
else
{
78
nucleon = particle2;
79
pion = particle1;
80
}
81
82
const
G4double
sqrtS =
KinematicsUtils::totalEnergyInCM
(nucleon, pion);
83
84
const
G4int
iso =
ParticleTable::getIsospin
(nucleon->getType()) +
ParticleTable::getIsospin
(pion->getType());
85
G4double
rdm =
Random::shoot
();
86
87
ParticleType
KaonType;
88
ParticleType
PionType;
89
90
if
(iso == 3 || iso == -3){
91
if
(rdm < 0.5){
92
KaonType =
ParticleTable::getKaonType
(iso/3);
93
PionType =
PiZero
;
94
}
95
else
{
96
KaonType =
ParticleTable::getKaonType
(-iso/3);
97
PionType =
ParticleTable::getPionType
(2*iso/3);
98
}
99
}
100
else
if
(pion->getType() ==
PiZero
){
101
if
(rdm*7. < 1.){
102
KaonType =
ParticleTable::getKaonType
(iso);
103
PionType =
PiZero
;
104
}
105
else
if
(rdm*7. < 5.){
106
KaonType =
ParticleTable::getKaonType
(iso);
107
pion->setType(
PiPlus
);
108
PionType =
PiMinus
;
109
}
110
else
{
111
KaonType =
ParticleTable::getKaonType
(-iso);
112
PionType =
ParticleTable::getPionType
(2*iso);
113
}
114
}
115
else
{
116
if
(rdm*5. < 2.){
117
KaonType =
ParticleTable::getKaonType
(-iso);
118
PionType =
PiZero
;
119
}
120
else
if
(rdm*5. < 4.){
121
KaonType =
ParticleTable::getKaonType
(iso);
122
PionType =
ParticleTable::getPionType
(-2*iso);;
123
}
124
else
{
125
KaonType =
ParticleTable::getKaonType
(iso);
126
pion->setType(
PiZero
);
127
PionType =
PiZero
;
128
}
129
}
130
131
nucleon->setType(
Lambda
);
132
133
ParticleList
list;
134
list.push_back(nucleon);
135
list.push_back(pion);
136
const
ThreeVector
&rcol1 = nucleon->getPosition();
137
const
ThreeVector
&rcol2 = pion->getPosition();
138
const
ThreeVector
zero;
139
Particle
*kaon =
new
Particle
(KaonType,zero,rcol1);
140
Particle
*pion2 =
new
Particle
(PionType,zero,rcol2);
141
list.push_back(kaon);
142
list.push_back(pion2);
143
144
PhaseSpaceGenerator::generateBiased
(sqrtS, list, 0, angularSlope);
145
146
INCL_DEBUG
(
"NpiToLK2pi "
<< (kaon->
getMomentum
().
theta
()) * 180. /
G4INCL::Math::pi
<<
'\n'
);
147
148
fs->
addModifiedParticle
(nucleon);
149
fs->
addModifiedParticle
(pion);
150
fs->
addCreatedParticle
(kaon);
151
fs->
addCreatedParticle
(pion2);
152
153
}
154
}
G4INCLBinaryCollisionAvatar.hh
G4INCLGlobals.hh
G4INCLKinematicsUtils.hh
G4INCLLogger.hh
INCL_DEBUG
#define INCL_DEBUG(x)
Definition:
G4INCLLogger.hh:240
G4INCLNpiToLK2piChannel.hh
G4INCLPhaseSpaceGenerator.hh
G4INCLRandom.hh
G4double
double G4double
Definition:
G4Types.hh:83
G4int
int G4int
Definition:
G4Types.hh:85
G4INCL::FinalState
Definition:
G4INCLFinalState.hh:64
G4INCL::FinalState::addModifiedParticle
void addModifiedParticle(Particle *p)
Definition:
G4INCLFinalState.cc:60
G4INCL::FinalState::addCreatedParticle
void addCreatedParticle(Particle *p)
Definition:
G4INCLFinalState.cc:75
G4INCL::NpiToLK2piChannel::~NpiToLK2piChannel
virtual ~NpiToLK2piChannel()
Definition:
G4INCLNpiToLK2piChannel.cc:55
G4INCL::NpiToLK2piChannel::NpiToLK2piChannel
NpiToLK2piChannel(Particle *, Particle *)
Definition:
G4INCLNpiToLK2piChannel.cc:51
G4INCL::NpiToLK2piChannel::fillFinalState
void fillFinalState(FinalState *fs)
Definition:
G4INCLNpiToLK2piChannel.cc:57
G4INCL::ParticleList
Definition:
G4INCLParticle.hh:62
G4INCL::Particle
Definition:
G4INCLParticle.hh:75
G4INCL::Particle::getMomentum
const G4INCL::ThreeVector & getMomentum() const
Definition:
G4INCLParticle.hh:794
G4INCL::Particle::isNucleon
G4bool isNucleon() const
Definition:
G4INCLParticle.hh:303
G4INCL::ThreeVector
Definition:
G4INCLThreeVector.hh:54
G4INCL::ThreeVector::theta
G4double theta() const
Definition:
G4INCLThreeVector.hh:83
globals.hh
G4INCL::KinematicsUtils::totalEnergyInCM
G4double totalEnergyInCM(Particle const *const p1, Particle const *const p2)
Definition:
G4INCLKinematicsUtils.cc:94
G4INCL::Math::pi
const G4double pi
Definition:
G4INCLGlobals.hh:68
G4INCL::ParticleTable::getKaonType
ParticleType getKaonType(const G4int isosp)
Get the type of kaon.
Definition:
G4INCLParticleTable.cc:1278
G4INCL::ParticleTable::getIsospin
G4int getIsospin(const ParticleType t)
Get the isospin of a particle.
Definition:
G4INCLParticleTable.cc:478
G4INCL::ParticleTable::getPionType
ParticleType getPionType(const G4int isosp)
Get the type of pion.
Definition:
G4INCLParticleTable.cc:1225
G4INCL::PhaseSpaceGenerator::generateBiased
void generateBiased(const G4double sqrtS, ParticleList &particles, const size_t index, const G4double slope)
Generate a biased event in the CM system.
Definition:
G4INCLPhaseSpaceGenerator.cc:98
G4INCL::Random::shoot
G4double shoot()
Definition:
G4INCLRandom.cc:93
G4INCL
Definition:
G4INCLAvatarDumpAction.hh:51
G4INCL::ParticleType
ParticleType
Definition:
G4INCLParticleType.hh:50
G4INCL::PiMinus
@ PiMinus
Definition:
G4INCLParticleType.hh:54
G4INCL::Lambda
@ Lambda
Definition:
G4INCLParticleType.hh:65
G4INCL::PiPlus
@ PiPlus
Definition:
G4INCLParticleType.hh:53
G4INCL::PiZero
@ PiZero
Definition:
G4INCLParticleType.hh:55
geant4-v10.7.0
source
processes
hadronic
models
inclxx
incl_physics
src
G4INCLNpiToLK2piChannel.cc
Generated by
1.9.6