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G4IonINCLXXPhysics.cc
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25 //
26 // $Id$
27 //
28 //---------------------------------------------------------------------------
29 //
30 // ClassName: G4IonINCLXXPhysics
31 //
32 // Author: D. Mancusi
33 //
34 // Modified:
35 //
36 //----------------------------------------------------------------------------
37 //
38 
39 #include "G4IonINCLXXPhysics.hh"
40 
41 #include "G4SystemOfUnits.hh"
46 
47 #include "G4INCLXXInterface.hh"
51 
52 #include "G4ParticleDefinition.hh"
53 #include "G4ParticleTable.hh"
54 #include "G4ProcessManager.hh"
55 
56 // Nuclei
57 #include "G4IonConstructor.hh"
58 #include "G4BuilderType.hh"
59 
60 // factory
62 //
64 
65 
67  G4VPhysicsConstructor("IonINCLXX"),
68  fINCLXXIons(NULL),
69  fTripathi(NULL),
70  fTripathiLight(NULL),
71  fShen(NULL),
72  fLEDModel(NULL),
73  fLETModel(NULL),
74  fLEAModel(NULL),
75  verbose(ver), wasActivated(false)
76 {
77  // INCLXX light ion maximum energy is 3.0 GeV/nucleon
78  emax_d = 2 * 3.0 * GeV;
79  emax_t = 3 * 3.0 * GeV;
80  emax_he3 = 3 * 3.0 * GeV;
81  emax_alpha = 4 * 3.0 * GeV;
82  emax = 16 * 3.0 * GeV;
83  emaxLHEP = 1.*TeV;
84  emin = 0.*MeV;
86  if(verbose > 1) G4cout << "### G4IonINCLXXPhysics" << G4endl;
87 }
88 
90  G4int ver)
91  : G4VPhysicsConstructor(name),
92  fINCLXXIons(NULL),
93  fTripathi(NULL),
94  fTripathiLight(NULL),
95  fShen(NULL),
96  fLEDModel(NULL),
97  fLETModel(NULL),
98  fLEAModel(NULL),
99  verbose(ver), wasActivated(false)
100 {
101  // INCLXX light ion maximum energy is 3.0 GeV/nucleon
102  emax_d = 2 * 3.0 * GeV;
103  emax_t = 3 * 3.0 * GeV;
104  emax_he3 = 3 * 3.0 * GeV;
105  emax_alpha = 4 * 3.0 * GeV;
106  emax = 16 * 3.0 * GeV;
107  emaxLHEP = 1.*TeV;
108  emin = 0.*MeV;
110  if(verbose > 1) G4cout << "### G4IonINCLXXPhysics" << G4endl;
111 }
112 
114 {
115  if(wasActivated) {
116  delete fTripathi;
117  delete fTripathiLight;
118  delete fShen;
119  delete fLEDModel;
120  delete fLETModel;
121  delete fLEAModel;
122  G4int i;
123  G4int n = p_list.size();
124  for(i=0; i<n; i++) {delete p_list[i];}
125  delete fINCLXXIons;
126  }
127 }
128 
130 {
131  if(wasActivated) return;
132  wasActivated = true;
133 
134  fINCLXXIons= new G4INCLXXInterface();
135  fShen = new G4IonsShenCrossSection;
136  fTripathi = new G4TripathiCrossSection;
137  fTripathiLight = new G4TripathiLightCrossSection;
138 
139  fLEDModel = new G4LEDeuteronInelastic();
140  fLETModel = new G4LETritonInelastic();
141  fLEAModel = new G4LEAlphaInelastic();
142 
143  AddProcess("dInelastic", G4Deuteron::Deuteron(), fINCLXXIons, fLEDModel, emax_d);
144  AddProcess("tInelastic",G4Triton::Triton(), fINCLXXIons, fLETModel, emax_t);
145  AddProcess("He3Inelastic",G4He3::He3(), fINCLXXIons, 0, emax_he3);
146  AddProcess("alphaInelastic", G4Alpha::Alpha(), fINCLXXIons, fLEAModel, emax_alpha);
147  AddProcess("ionInelastic",G4GenericIon::GenericIon(), fINCLXXIons, 0, emax);
148 }
149 
150 void G4IonINCLXXPhysics::AddProcess(const G4String& name,
152  G4HadronicInteraction* hmodel,
153  G4HadronicInteraction* lmodel,
154  const G4double inclxxEnergyUpperLimit = 3.0 * GeV)
155 {
157  p_list.push_back(hadi);
158  G4ProcessManager* pManager = p->GetProcessManager();
159  pManager->AddDiscreteProcess(hadi);
160  hadi->AddDataSet(fShen);
161  hadi->AddDataSet(fTripathi);
162  hadi->AddDataSet(fTripathiLight);
163  hmodel->SetMinEnergy(emin);
164  hmodel->SetMaxEnergy(inclxxEnergyUpperLimit);
165  hadi->RegisterMe(hmodel);
166  if(lmodel) {
167  lmodel->SetMinEnergy(inclxxEnergyUpperLimit - MeV);
168  lmodel->SetMaxEnergy(emaxLHEP);
169  hadi->RegisterMe(lmodel);
170  }
171  if(verbose > 1) {
172  G4cout << "Register " << hadi->GetProcessName()
173  << " for " << p->GetParticleName()
174  << " INCLXX/G4DeexcitationHandler for E(MeV)= " << emin << " - " << inclxxEnergyUpperLimit;
175  if(lmodel) {
176  G4cout << " LHEP for E(MeV)= " << inclxxEnergyUpperLimit-MeV << " - " << emaxLHEP;
177  }
178  G4cout << G4endl;
179  }
180 }
181 
183 {
184  // Construct light ions
185  G4IonConstructor pConstructor;
186  pConstructor.ConstructParticle();
187 }