source: trunk/source/processes/electromagnetic/adjoint/src/G4VAdjointReverseReaction.cc @ 1315

Last change on this file since 1315 was 1228, checked in by garnier, 15 years ago

update geant4.9.3 tag

File size: 5.3 KB
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26// $Id: G4VAdjointReverseReaction.cc,v 1.2 2009/11/20 10:31:20 ldesorgh Exp $
27// GEANT4 tag $Name: geant4-09-03 $
28//
29#include "G4VAdjointReverseReaction.hh"
30#include "G4AdjointCSManager.hh"
31#include "G4AdjointCSMatrix.hh"
32#include "G4AdjointInterpolator.hh"
33#include "G4AdjointCSMatrix.hh"
34#include "G4VEmAdjointModel.hh"
35#include "G4ElementTable.hh"
36#include "G4Element.hh"
37#include "G4Material.hh"
38#include "G4MaterialCutsCouple.hh"
39#include "G4AdjointCSManager.hh"
40#include "G4ParticleChange.hh"
41#include "G4AdjointElectron.hh"
42
43
44G4VAdjointReverseReaction::
45        G4VAdjointReverseReaction(G4String process_name, G4bool whichScatCase):
46                        G4VDiscreteProcess(process_name)
47{theAdjointCSManager = G4AdjointCSManager::GetAdjointCSManager();
48 IsScatProjToProjCase=whichScatCase;
49 fParticleChange=new G4ParticleChange();
50 
51}
52//////////////////////////////////////////////////////////////////////////////
53//
54G4VAdjointReverseReaction::
55        ~G4VAdjointReverseReaction()
56{;
57}                       
58//////////////////////////////////////////////////////////////////////////////
59//
60void G4VAdjointReverseReaction::PreparePhysicsTable(const G4ParticleDefinition&)
61{;
62}
63//////////////////////////////////////////////////////////////////////////////
64//
65void G4VAdjointReverseReaction::BuildPhysicsTable(const G4ParticleDefinition&)
66{
67
68 theAdjointCSManager->BuildCrossSectionMatrices(); //do not worry it will be done just once
69 theAdjointCSManager->BuildTotalSigmaTables();
70
71}
72//////////////////////////////////////////////////////////////////////////////
73//
74G4VParticleChange* G4VAdjointReverseReaction::PostStepDoIt(const G4Track& track, const G4Step&  )
75{ 
76 
77 
78 
79  fParticleChange->Initialize(track);
80 
81 /* if (IsFwdCSUsed && IsIntegralModeUsed){ //INtegral mode still unstable
82         G4double Tkin = step.GetPostStepPoint()->GetKineticEnergy();
83         G4double fwdCS = theAdjointCSManager->GetTotalForwardCS(track.GetDefinition(), Tkin, track.GetMaterialCutsCouple());
84         //G4cout<<"lastCS "<<lastCS<<G4endl;
85         if (fwdCS<lastCS*G4UniformRand()) { // the reaction does not take place, same integral method as the one used for forward ionisation in  G4
86                ClearNumberOfInteractionLengthLeft();
87                return fParticleChange;
88         }
89         
90  }
91 */
92 
93  theAdjointEMModel->SampleSecondaries(track,
94                                       IsScatProjToProjCase,
95                                        fParticleChange);
96 
97  ClearNumberOfInteractionLengthLeft();
98  return fParticleChange;
99                       
100   
101 
102}
103//////////////////////////////////////////////////////////////////////////////
104//
105G4double G4VAdjointReverseReaction::GetMeanFreePath(const G4Track& track,
106                                                                                     G4double ,
107                                                                                     G4ForceCondition* condition)
108{ *condition = NotForced;
109  G4double preStepKinEnergy = track.GetKineticEnergy();
110 
111  G4double Sigma =
112                theAdjointEMModel->AdjointCrossSection(track.GetMaterialCutsCouple(),preStepKinEnergy,IsScatProjToProjCase);
113               
114  G4double fwd_TotCS;
115  Sigma *=  theAdjointCSManager->GetCrossSectionCorrection(track.GetDefinition(),preStepKinEnergy,track.GetMaterialCutsCouple(),IsFwdCSUsed, fwd_TotCS);
116  //G4cout<<fwd_TotCS<<G4endl;
117  /*if (IsFwdCSUsed && IsIntegralModeUsed){ //take the maximum cross section only for charged particle         
118        G4double e_sigma_max, sigma_max;
119        theAdjointCSManager->GetMaxFwdTotalCS(track.GetDefinition(),
120                                     track.GetMaterialCutsCouple(), e_sigma_max, sigma_max);
121        if (e_sigma_max > preStepKinEnergy){
122                Sigma*=sigma_max/fwd_TotCS;
123        }                   
124  }
125  */           
126
127  G4double mean_free_path = 1.e60 *mm; 
128  if (Sigma>0) mean_free_path = 1./Sigma;
129  lastCS=Sigma;
130 
131  /*G4cout<<"Sigma  "<<Sigma<<G4endl;
132  G4cout<<"mean_free_path [mm] "<<mean_free_path/mm<<G4endl;
133  */
134 
135
136  return mean_free_path;
137}                                       
138                                 
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