source: trunk/examples/advanced/medical_linac/src/MedLinacPhysicsList.cc

Last change on this file was 807, checked in by garnier, 16 years ago

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26// $Id: MedLinacPhysicsList.cc,v 1.6 2007/07/01 15:19:18 mpiergen Exp $
27//
28//
29// Code developed by: M. Piergentili
30//
31#include "globals.hh"
32#include "MedLinacPhysicsList.hh"
33#include "MedLinacPhysicsListMessenger.hh"
34
35#include "G4ParticleDefinition.hh"
36#include "G4ParticleWithCuts.hh"
37#include "G4ProcessManager.hh"
38#include "G4ProcessVector.hh"
39#include "G4ParticleTypes.hh"
40#include "G4ParticleTable.hh"
41#include "G4Material.hh"
42#include "G4ios.hh"
43#include <iomanip>  
44#include "G4UnitsTable.hh"
45#include "G4Region.hh"
46#include "G4RegionStore.hh"
47#include "G4ProductionCuts.hh"
48#include "G4ProductionCutsTable.hh"
49#include "G4StepLimiter.hh"
50MedLinacPhysicsList::MedLinacPhysicsList():  G4VUserPhysicsList()
51{   
52  physicsListMessenger = new MedLinacPhysicsListMessenger(this);
53  //defaultCutValue = defaultCut;
54  //cutForGamma     = defaultCutValue;
55  //cutForElectron  = defaultCutValue;
56  //cutForPositron  = defaultCutValue;
57   SetVerboseLevel(6);
58}
59
60MedLinacPhysicsList::~MedLinacPhysicsList()
61{;}
62
63void MedLinacPhysicsList::ConstructParticle()
64{
65  // In this method, static member functions should be called
66  // for all particles which you want to use.
67  // This ensures that objects of these particle types will be
68  // created in the program.
69
70  ConstructBosons();
71  ConstructLeptons();
72}
73void MedLinacPhysicsList::ConstructBosons()
74{
75  // gamma
76  G4Gamma::GammaDefinition();
77}
78
79void MedLinacPhysicsList::ConstructLeptons()
80{
81  // leptons
82  //  e+/-
83  G4Electron::ElectronDefinition();
84  G4Positron::PositronDefinition();
85}
86
87void MedLinacPhysicsList::ConstructProcess()
88{
89  // Define transportation process
90
91  AddTransportation();
92  ConstructEM();
93}
94
95//---------------------------------------------------------------------
96
97//#include "G4ComptonScattering.hh"
98//#include "G4GammaConversion.hh"
99//#include "G4PhotoElectricEffect.hh"
100
101#include "G4LowEnergyPhotoElectric.hh"
102#include "G4LowEnergyCompton.hh" 
103#include "G4LowEnergyGammaConversion.hh"
104#include "G4LowEnergyRayleigh.hh"
105
106//#include "G4PenelopePhotoElectric.hh"
107//#include "G4PenelopeCompton.hh" 
108//#include "G4PenelopeGammaConversion.hh"
109//#include "G4PenelopeRayleigh.hh"
110
111#include "G4MultipleScattering.hh"
112
113#include "G4LowEnergyIonisation.hh"
114#include "G4LowEnergyBremsstrahlung.hh"
115
116//#include "G4PenelopeIonisation.hh"
117//#include "G4PenelopeBremsstrahlung.hh"
118
119#include "G4eIonisation.hh"
120#include "G4eBremsstrahlung.hh"
121#include "G4eplusAnnihilation.hh"
122
123
124//---------------------------------------------------------------------
125
126void MedLinacPhysicsList::ConstructEM()
127{
128  theParticleIterator->reset();
129  while( (*theParticleIterator)() ){
130    G4ParticleDefinition* particle = theParticleIterator->value();
131    G4ProcessManager* pmanager = particle->GetProcessManager();
132    G4String particleName = particle->GetParticleName();
133     
134    if (particleName == "gamma") {
135      // gamma 
136 
137      lowePhot = new  G4LowEnergyPhotoElectric("LowEnPhotoElec");
138      pmanager->AddDiscreteProcess(new G4LowEnergyRayleigh);
139      pmanager->AddDiscreteProcess(lowePhot);
140      pmanager->AddDiscreteProcess(new G4LowEnergyCompton);
141      pmanager->AddDiscreteProcess(new G4LowEnergyGammaConversion);
142      pmanager -> AddProcess(new G4StepLimiter(), -1, -1, 3);
143
144      //pmanager->AddDiscreteProcess(new G4PhotoElectricEffect);
145      //pmanager->AddDiscreteProcess(new G4ComptonScattering);
146      //pmanager->AddDiscreteProcess(new G4GammaConversion);
147
148      //pmanager->AddDiscreteProcess(new G4PenelopePhotoElectric);
149      //pmanager->AddDiscreteProcess(new G4PenelopeCompton);
150      //pmanager->AddDiscreteProcess(new G4PenelopeGammaConversion);     
151      //pmanager->AddDiscreteProcess(new G4PenelopeRayleigh);
152
153     
154    } else if (particleName == "e-") {
155      //electron
156     
157      loweIon  = new G4LowEnergyIonisation("LowEnergyIoni");
158      loweBrem = new G4LowEnergyBremsstrahlung("LowEnBrem");
159   
160      pmanager->AddProcess(new G4MultipleScattering, -1, 1,1);
161      pmanager->AddProcess(loweIon,     -1, 2,2);
162      pmanager->AddProcess(loweBrem,    -1,-1,3);     
163      pmanager -> AddProcess(new G4StepLimiter(), -1, -1, 3);
164     
165      //pmanager->AddProcess(new G4PenelopeIonisation,       -1, 2,2);
166      //pmanager->AddProcess(new G4PenelopeBremsstrahlung,   -1,-1,3);
167     
168      //pmanager->AddProcess(new G4eIonisation,       -1, 2,2);
169      //pmanager->AddProcess(new G4eBremsstrahlung,   -1,-1,3);   
170 
171    } else if (particleName == "e+") {
172      //positron
173      pmanager->AddProcess(new G4MultipleScattering,-1, 1,1);
174      pmanager->AddProcess(new G4eIonisation,       -1, 2,2);
175      pmanager->AddProcess(new G4eBremsstrahlung,   -1,-1,3);
176      pmanager->AddProcess(new G4eplusAnnihilation,  0,-1,4);
177      pmanager -> AddProcess(new G4StepLimiter(), -1, -1, 3);
178    }
179  }
180}
181
182
183//---------------------------------------------------------------------
184
185void MedLinacPhysicsList::SetCuts()
186{
187  // uppress error messages even in case e/gamma/proton do not exist           
188  G4int temp = GetVerboseLevel();                                               
189  SetVerboseLevel(6);               
190                                           
191  //  " G4VUserPhysicsList::SetCutsWithDefault" method sets
192  //   the default cut value for all particle types
193 defaultCutValue = defaultCut;
194 //G4cout <<"--------------------default cut  "<< defaultCutValue/mm << " mm " <<G4endl;
195  SetCutsWithDefault();   
196
197  //SetCutValue(cutForGamma, "gamma");
198  //SetCutValue(cutForElectron, "e-");
199  //SetCutValue(cutForPositron, "e+");
200
201  // Retrieve verbose level
202  SetVerboseLevel(temp); 
203
204  // Production thresholds for detector regions
205
206  //G4String regName[] = {"PrimaryCollimatorUp","PrimaryCollimatorLow"};
207  //G4double cutValue[] = {1.*mm, 1.*mm};
208  //for(G4int i=0;i<2;i++)
209  // {
210  //G4Region* reg = G4RegionStore::GetInstance()->GetRegion(regName[i]);
211  //G4ProductionCuts* cuts = new G4ProductionCuts;
212  //cuts->SetProductionCut(cutValue[i]);
213  //reg->SetProductionCuts(cuts);
214  //}
215
216
217  G4String regName = "PrimaryCollimatorLow";
218  G4double cutValue = 8.*cm; 
219  G4Region* reg = G4RegionStore::GetInstance()->GetRegion(regName);
220  G4ProductionCuts* cuts = new G4ProductionCuts;
221  cuts->SetProductionCut(cutValue);
222  reg->SetProductionCuts(cuts);
223
224  G4String regName1 = "PrimaryCollimatorUp";
225  G4double cutValue1 = 8.*cm; 
226  G4Region* reg1 = G4RegionStore::GetInstance()->GetRegion(regName1);
227  G4ProductionCuts* cuts1 = new G4ProductionCuts;
228  cuts1->SetProductionCut(cutValue1);
229  reg1->SetProductionCuts(cuts1);
230
231 
232
233  if (verboseLevel >0){
234    G4cout << "MedLinac::SetCuts: default cut length : "
235         << G4BestUnit(defaultCutValue,"Length") << G4endl;
236  }
237 
238
239}
240
241
242
243void MedLinacPhysicsList::SetCut (G4double val)
244{ 
245  defaultCut = val;
246}
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