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>> 47 stackMessenger = new StackingMessenger(this); 49 } 48 } 50 49 51 //....oooOO0OOooo........oooOO0OOooo........oo 50 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo...... 52 51 53 StackingAction::~StackingAction() 52 StackingAction::~StackingAction() 54 { 53 { 55 delete fStackMessenger; << 54 delete stackMessenger; 56 } 55 } 57 56 58 //....oooOO0OOooo........oooOO0OOooo........oo 57 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo...... 59 58 60 G4ClassificationOfNewTrack StackingAction::Cla << 59 G4ClassificationOfNewTrack >> 60 StackingAction::ClassifyNewTrack(const G4Track* aTrack) 61 { 61 { 62 G4AnalysisManager* analysisManager = G4Analy << 62 //keep primary particle 63 << 63 if (aTrack->GetParentID() == 0) return fUrgent; 64 // keep primary particle << 65 if (aTrack->GetParentID() == 0) { << 66 return fUrgent; << 67 } << 68 64 69 G4int procID = aTrack->GetCreatorProcess()-> << 65 //count secondary particles 70 G4int modelID = aTrack->GetCreatorModelID(); << 66 runaction->CountParticles(aTrack->GetDefinition()); 71 67 72 // count secondary particles << 73 Run* run = static_cast<Run*>(G4RunManager::G << 74 run->CountParticles(aTrack->GetDefinition()) << 75 /* << 76 G4cout << "###StackingAction: new " << 77 << aTrack->GetDefinition()->GetPartic << 78 << " E(MeV)= " << aTrack->GetKineticE << 79 << " " << aTrack->GetMomentumDirecti << 80 */ << 81 // 68 // 82 // energy spectrum of secondaries << 69 //energy spectrum of secondaries 83 // 70 // 84 G4double energy = aTrack->GetKineticEnergy() 71 G4double energy = aTrack->GetKineticEnergy(); 85 G4double charge = aTrack->GetDefinition()->G 72 G4double charge = aTrack->GetDefinition()->GetPDGCharge(); 86 73 87 if (charge != 0.) { << 74 if (charge != 0.) histoManager->FillHisto(2,energy); 88 analysisManager->FillH1(2, energy); << 89 analysisManager->FillH1(4, energy); << 90 if (procID >= 51 && procID <= 65) { << 91 analysisManager->FillH1(58, energy); << 92 analysisManager->FillH1(60, energy); << 93 } << 94 else if (_AugerElectron == modelID) { << 95 analysisManager->FillH1(50, energy); << 96 analysisManager->FillH1(52, energy); << 97 } << 98 else if (_ePIXE == modelID) { << 99 analysisManager->FillH1(54, energy); << 100 analysisManager->FillH1(56, energy); << 101 } << 102 } << 103 75 104 if (aTrack->GetDefinition() == G4Gamma::Gamm << 76 if (aTrack->GetDefinition() == G4Gamma::Gamma()) 105 analysisManager->FillH1(3, energy); << 77 histoManager->FillHisto(3, std::log10(energy/MeV)); 106 analysisManager->FillH1(5, energy); << 107 if (procID >= 51 && procID <= 65) { << 108 analysisManager->FillH1(59, energy); << 109 analysisManager->FillH1(61, energy); << 110 } << 111 else if (_Fluorescence == modelID) { << 112 analysisManager->FillH1(51, energy); << 113 analysisManager->FillH1(53, energy); << 114 } << 115 else if (_GammaPIXE == modelID) { << 116 analysisManager->FillH1(55, energy); << 117 analysisManager->FillH1(57, energy); << 118 } << 119 } << 120 78 121 // stack or delete secondaries << 79 //stack or delete secondaries 122 G4ClassificationOfNewTrack status = fUrgent; 80 G4ClassificationOfNewTrack status = fUrgent; 123 if (0 < fKillSecondary) { << 81 if (killSecondary) { 124 if (fKillSecondary == 1) { << 82 if (killSecondary == 1) { 125 fEventAction->AddEnergy(energy); << 83 eventaction->AddEnergy(energy); 126 } << 84 } 127 status = fKill; << 85 status = fKill; 128 } 86 } 129 << 87 130 return status; 88 return status; 131 } 89 } 132 90 133 //....oooOO0OOooo........oooOO0OOooo........oo 91 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo...... 134 92