Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4DalitzDecayChannel.cc
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1//
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25//
26//
27// $Id$
28//
29//
30// ------------------------------------------------------------
31// GEANT 4 class header file
32//
33// History: first implementation, based on object model of
34// 30 May 1997 H.Kurashige
35// ------------------------------------------------------------
36
38#include "G4SystemOfUnits.hh"
40#include "G4DecayProducts.hh"
41#include "G4VDecayChannel.hh"
44#include "Randomize.hh"
45#include "G4LorentzVector.hh"
46#include "G4LorentzRotation.hh"
47
50{
51}
52
54 const G4String& theParentName,
55 G4double theBR,
56 const G4String& theLeptonName,
57 const G4String& theAntiLeptonName)
58 :G4VDecayChannel("Dalitz Decay",1)
59{
60 // set names for daughter particles
61 SetParent(theParentName);
62 SetBR(theBR);
64 G4String gammaName = "gamma";
65 SetDaughter(idGamma, gammaName);
66 SetDaughter(idLepton, theLeptonName);
67 SetDaughter(idAntiLepton, theAntiLeptonName);
68}
69
71{
72}
73
75 G4VDecayChannel(right)
76{
77}
78
80{
81 if (this != &right) {
84 rbranch = right.rbranch;
85
86 // copy parent name
87 parent_name = new G4String(*right.parent_name);
88
89 // clear daughters_name array
91
92 // recreate array
94 if ( numberOfDaughters >0 ) {
97 //copy daughters name
98 for (G4int index=0; index < numberOfDaughters; index++) {
99 daughters_name[index] = new G4String(*right.daughters_name[index]);
100 }
101 }
102 }
103 return *this;
104}
105
107{
108#ifdef G4VERBOSE
109 if (GetVerboseLevel()>1) G4cout << "G4DalitzDecayChannel::DecayIt ";
110#endif
111 if (parent == 0) FillParent();
112 if (daughters == 0) FillDaughters();
113
114 // parent mass
115 G4double parentmass = parent->GetPDGMass();
116
117 //create parent G4DynamicParticle at rest
118 G4ThreeVector dummy;
119 G4DynamicParticle * parentparticle = new G4DynamicParticle( parent, dummy, 0.0);
120
121 //daughters'mass
122 G4double leptonmass = daughters[idLepton]->GetPDGMass();
123
124 // Generate t ( = std::exp(x):mass Square of (l+ l-) system)
125 G4double xmin = 2.0*std::log(2.0*leptonmass);
126 G4double xmax = 2.0*std::log(parentmass);
127 G4double wmax = 1.5;
128 G4double x, w, ww, w1, w2, w3, t;
129 do {
130 x = G4UniformRand()*(xmax-xmin) + xmin;
131 w = G4UniformRand()*wmax;
132 t = std::exp(x);
133 w1 = (1.0-4.0*leptonmass*leptonmass/t);
134 if ( w1 > 0.0) {
135 w2 = ( 1.0 + 2.0*leptonmass*leptonmass/t );
136 w3 = ( 1.0 - t/parentmass/parentmass );
137 w3 = w3 * w3 * w3;
138 ww = w3 * w2 * std::sqrt(w1);
139 } else {
140 ww = 0.0;
141 }
142 } while (w > ww);
143
144 // calculate gamma momentum
145 G4double Pgamma =
146 G4PhaseSpaceDecayChannel::Pmx(parentmass, 0.0, std::sqrt(t));
147 G4double costheta = 2.*G4UniformRand()-1.0;
148 G4double sintheta = std::sqrt((1.0 - costheta)*(1.0 + costheta));
149 G4double phi = twopi*G4UniformRand()*rad;
150 G4ThreeVector gdirection(sintheta*std::cos(phi),sintheta*std::sin(phi),costheta);
151
152 //create G4DynamicParticle for gamma
153 G4DynamicParticle * gammaparticle
154 = new G4DynamicParticle(daughters[idGamma] , gdirection, Pgamma);
155
156 // calcurate beta of (l+ l-)system
157 G4double beta = Pgamma/(parentmass-Pgamma);
158
159 // calculate lepton momentum in the rest frame of (l+ l-)system
160 G4double Plepton =
161 G4PhaseSpaceDecayChannel::Pmx(std::sqrt(t),leptonmass, leptonmass);
162 G4double Elepton = std::sqrt(Plepton*Plepton + leptonmass*leptonmass );
163 costheta = 2.*G4UniformRand()-1.0;
164 sintheta = std::sqrt((1.0 - costheta)*(1.0 + costheta));
165 phi = twopi*G4UniformRand()*rad;
166 G4ThreeVector ldirection(sintheta*std::cos(phi),sintheta*std::sin(phi),costheta);
167 //create G4DynamicParticle for leptons in the rest frame of (l+ l-)system
168 G4DynamicParticle * leptonparticle
169 = new G4DynamicParticle(daughters[idLepton] ,
170 ldirection, Elepton-leptonmass );
171 G4DynamicParticle * antileptonparticle
172 = new G4DynamicParticle(daughters[idAntiLepton] ,
173 -1.0*ldirection, Elepton-leptonmass );
174 //boost leptons in the rest frame of the parent
175 G4LorentzVector p4 = leptonparticle->Get4Momentum();
176 p4.boost( -1.0*gdirection.x()*beta, -1.0*gdirection.y()*beta, -1.0*gdirection.z()*beta);
177 leptonparticle->Set4Momentum(p4);
178 p4 = antileptonparticle->Get4Momentum();
179 p4.boost( -1.0*gdirection.x()*beta, -1.0*gdirection.y()*beta, -1.0*gdirection.z()*beta);
180 antileptonparticle->Set4Momentum(p4);
181
182 //create G4Decayproducts
183 G4DecayProducts *products = new G4DecayProducts(*parentparticle);
184 delete parentparticle;
185 products->PushProducts(gammaparticle);
186 products->PushProducts(leptonparticle);
187 products->PushProducts(antileptonparticle);
188
189#ifdef G4VERBOSE
190 if (GetVerboseLevel()>1) {
191 G4cout << "G4DalitzDecayChannel::DecayIt ";
192 G4cout << " create decay products in rest frame " <<G4endl;
193 products->DumpInfo();
194 }
195#endif
196 return products;
197}
198
199
200
201
202
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
#define G4endl
Definition: G4ios.hh:52
G4DLLIMPORT std::ostream G4cout
#define G4UniformRand()
Definition: Randomize.hh:53
double z() const
double x() const
double y() const
HepLorentzVector & boost(double, double, double)
G4DalitzDecayChannel(const G4String &theParentName, G4double theBR, const G4String &theLeptonName, const G4String &theAntiLeptonName)
G4DalitzDecayChannel & operator=(const G4DalitzDecayChannel &)
virtual G4DecayProducts * DecayIt(G4double)
void DumpInfo() const
G4int PushProducts(G4DynamicParticle *aParticle)
G4LorentzVector Get4Momentum() const
void Set4Momentum(const G4LorentzVector &momentum)
static G4double Pmx(G4double e, G4double p1, G4double p2)
G4String * parent_name
void SetBR(G4double value)
G4String ** daughters_name
G4int GetVerboseLevel() const
void SetNumberOfDaughters(G4int value)
void SetDaughter(G4int anIndex, const G4ParticleDefinition *particle_type)
G4ParticleDefinition * parent
G4ParticleDefinition ** daughters
G4String kinematics_name
void SetParent(const G4ParticleDefinition *particle_type)