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Geant4/examples/extended/medical/electronScattering/src/TrackingAction.cc

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Diff markup

Differences between /examples/extended/medical/electronScattering/src/TrackingAction.cc (Version 11.3.0) and /examples/extended/medical/electronScattering/src/TrackingAction.cc (Version 10.0.p2)


  1 //                                                  1 //
  2 // *******************************************      2 // ********************************************************************
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 24 // *******************************************     24 // ********************************************************************
 25 //                                                 25 //
 26 /// \file medical/electronScattering/src/Track     26 /// \file medical/electronScattering/src/TrackingAction.cc
 27 /// \brief Implementation of the TrackingActio     27 /// \brief Implementation of the TrackingAction class
 28 //                                                 28 //
 29 //                                                 29 //
                                                   >>  30 // $Id: TrackingAction.cc 69009 2013-04-15 09:33:05Z gcosmo $
 30 //                                                 31 //
 31 //....oooOO0OOooo........oooOO0OOooo........oo     32 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 32 //....oooOO0OOooo........oooOO0OOooo........oo     33 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 33                                                    34 
 34 #include "TrackingAction.hh"                       35 #include "TrackingAction.hh"
 35                                                    36 
 36 #include "DetectorConstruction.hh"                 37 #include "DetectorConstruction.hh"
                                                   >>  38 #include "RunAction.hh"
 37 #include "HistoManager.hh"                         39 #include "HistoManager.hh"
 38 #include "Run.hh"                              << 
 39                                                    40 
                                                   >>  41 #include "G4Track.hh"
 40 #include "G4PhysicalConstants.hh"                  42 #include "G4PhysicalConstants.hh"
 41 #include "G4RunManager.hh"                     << 
 42 #include "G4SystemOfUnits.hh"                      43 #include "G4SystemOfUnits.hh"
 43 #include "G4Track.hh"                          << 
 44                                                    44 
 45 //....oooOO0OOooo........oooOO0OOooo........oo     45 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 46                                                    46 
 47 TrackingAction::TrackingAction(DetectorConstru <<  47 TrackingAction::TrackingAction(DetectorConstruction* DET,RunAction* RA)
                                                   >>  48 :fDetector(DET), fRunAction(RA)
 48 {                                                  49 {
 49   fZend = 0.5 * (fDetector->GetThicknessWorld( <<  50  fZend = 0.5*(fDetector->GetThicknessWorld()); 
 50 }                                                  51 }
 51                                                <<  52  
 52 //....oooOO0OOooo........oooOO0OOooo........oo     53 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 53                                                    54 
 54 void TrackingAction::PreUserTrackingAction(con <<  55 void TrackingAction::PreUserTrackingAction(const G4Track*)
                                                   >>  56 { }
 55                                                    57 
 56 //....oooOO0OOooo........oooOO0OOooo........oo     58 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 57                                                    59 
 58 void TrackingAction::PostUserTrackingAction(co     60 void TrackingAction::PostUserTrackingAction(const G4Track* track)
 59 {                                                  61 {
 60   G4AnalysisManager* analysisManager = G4Analy     62   G4AnalysisManager* analysisManager = G4AnalysisManager::Instance();
 61                                                <<  63   
 62   G4double charge = track->GetDefinition()->Ge     64   G4double charge = track->GetDefinition()->GetPDGCharge();
 63   G4ThreeVector position = track->GetPosition(     65   G4ThreeVector position = track->GetPosition();
 64   G4ThreeVector direction = track->GetMomentum <<  66   G4ThreeVector direction = track->GetMomentumDirection();    
 65                                                    67 
 66   if (charge == 0.0) return;                   <<  68   if (charge == 0.0)       return;
 67   if (position.z() < fZend) return;                69   if (position.z() < fZend) return;
 68   if (direction.z() <= 0.) return;                 70   if (direction.z() <= 0.) return;
 69                                                <<  71     
 70   G4double rmin, dr, ds;                           72   G4double rmin, dr, ds;
 71   G4int ih = 1;                                    73   G4int ih = 1;
 72                                                <<  74     
 73   // projected angle at exit                   <<  75   //projected angle at exit
 74                                                <<  76   //
 75   G4double ux = direction.x(), uy = direction.     77   G4double ux = direction.x(), uy = direction.y(), uz = direction.z();
 76   G4double thetax = std::atan(ux / uz);        <<  78   G4double thetax = std::atan(ux/uz);
 77   G4double thetay = std::atan(uy / uz);        <<  79   G4double thetay = std::atan(uy/uz);
 78   analysisManager->FillH1(ih, thetax);             80   analysisManager->FillH1(ih, thetax);
 79   analysisManager->FillH1(ih, thetay);             81   analysisManager->FillH1(ih, thetay);
 80                                                <<  82       
 81   // dN/dS at exit                             <<  83   //dN/dS at exit
 82                                                <<  84   //
 83   G4double x = position.x(), y = position.y();     85   G4double x = position.x(), y = position.y();
 84   G4double r = std::sqrt(x * x + y * y);       <<  86   G4double r = std::sqrt(x*x + y*y);
 85   ih = 2;                                          87   ih = 2;
 86   dr = analysisManager->GetH1Width(ih);            88   dr = analysisManager->GetH1Width(ih);
 87   rmin = ((int)(r / dr)) * dr;                 <<  89   rmin = ((int)(r/dr))*dr;
 88   ds = twopi * (rmin + 0.5 * dr) * dr;         <<  90   ds = twopi*(rmin + 0.5*dr)*dr;        
 89   analysisManager->FillH1(ih, r, 1 / ds);      <<  91   analysisManager->FillH1(ih, r, 1/ds);  
 90                                                <<  92       
 91   // d(N/cost)/dS at exit                      <<  93   //d(N/cost)/dS at exit
 92                                                <<  94   //
 93   ih = 3;                                          95   ih = 3;
 94   dr = analysisManager->GetH1Width(ih);            96   dr = analysisManager->GetH1Width(ih);
 95   rmin = ((int)(r / dr)) * dr;                 <<  97   rmin = ((int)(r/dr))*dr;
 96   ds = twopi * (rmin + 0.5 * dr) * dr;         <<  98   ds = twopi*(rmin + 0.5*dr)*dr;        
 97   analysisManager->FillH1(ih, r, 1 / (uz * ds) <<  99   analysisManager->FillH1(ih, r, 1/(uz*ds));
 98                                                << 100   
 99   // vector of d(N/cost)/dS at exit            << 101   //vector of d(N/cost)/dS at exit
100                                                << 102   //
101   Run* run = static_cast<Run*>(G4RunManager::G << 103   fRunAction->SumFluence(r, 1/uz);
102                                                << 104   
103   run->SumFluence(r, 1 / uz);                  << 105   //space angle at exit : dN/dOmega
104                                                << 106   //
105   // space angle at exit : dN/dOmega           << 
106                                                << 
107   ih = 5;                                         107   ih = 5;
108   G4double theta = std::acos(uz);                 108   G4double theta = std::acos(uz);
109   if (theta > 0.) {                               109   if (theta > 0.) {
110     G4double dtheta = analysisManager->GetH1Wi << 110      G4double dtheta = analysisManager->GetH1Width(ih);
111     G4double unit = analysisManager->GetH1Unit << 111      G4double unit   = analysisManager->GetH1Unit(ih);
112     if (dtheta > 0.) {                         << 112      if (dtheta > 0.) {
113       G4double weight = unit * unit / (twopi * << 113         G4double weight = unit*unit/(twopi*std::sin(theta)*dtheta);
114       analysisManager->FillH1(ih, theta, weigh << 114         analysisManager->FillH1(ih, theta, weight);
115     }                                          << 115      }
116   }                                               116   }
117                                                << 117   
118   // measured space angle at exit : dN/dOmega_ << 118   //measured space angle at exit : dN/dOmega_meas
119   //                                              119   //
120   ih = 6;                                      << 120   ih = 6;  
121   const G4double dist = fDetector->GetZdist_fo << 121   const G4double dist = fDetector->GetThicknessFrame();
122   G4double thetam = std::atan(r / dist);       << 122   G4double thetam = std::atan(r/dist);
123   if (thetam > 0.) {                              123   if (thetam > 0.) {
124     G4double dtheta = analysisManager->GetH1Wi << 124      G4double dtheta = analysisManager->GetH1Width(ih);
125     G4double unit = analysisManager->GetH1Unit << 125      G4double unit   = analysisManager->GetH1Unit(ih);
126     if (dtheta > 0.) {                         << 126      if (dtheta > 0.) {
127       G4double weight = unit * unit / (twopi * << 127         G4double weight = unit*unit/(twopi*std::sin(thetam)*dtheta);
128       analysisManager->FillH1(ih, thetam, weig << 128         analysisManager->FillH1(ih, thetam, weight);
129     }                                          << 129      }
130   }                                               130   }
                                                   >> 131 
131 }                                                 132 }
132                                                   133 
133 //....oooOO0OOooo........oooOO0OOooo........oo    134 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
                                                   >> 135 
134                                                   136