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G4AdjointSteppingAction.hh
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26 // $Id: G4AdjointSteppingAction.hh 75570 2013-11-04 11:41:10Z gcosmo $
27 //
28 /////////////////////////////////////////////////////////////////////////////////
29 // Class Name: G4AdjointSteppingAction
30 // Author: L. Desorgher
31 // Contract: ESA contract 21435/08/NL/AT
32 // Organisation: SpaceIT GmbH
33 // Customer: ESA/ESTEC
34 /////////////////////////////////////////////////////////////////////////////////
35 //
36 // CHANGE HISTORY
37 // --------------
38 // ChangeHistory:
39 // -15/01/2007 Creation by L. Desorgher
40 // -01/11/2009 Some cleaning and adding of documentation for the first Release in the Geant4 toolkit, L. Desorgher
41 // -04/11/2009 Adding the possibility to use user stepping action, L. Desorgher
42 // -20/11/2009 Correct the stop of adjoint particles tracking when it reenters the adjoint source.
43 //
44 //
45 //-------------------------------------------------------------
46 // Documentation:
47 // Stepping action used in the adjoint simulation.
48 // It is responsible to stop the adjoint tracking phase when:
49 // -a)The adjoint track reaches the external surface.
50 // -b)The being tracked adjoint dynamic particle get an energy higher than the maximum energy of the external source.
51 // -c)The adjoint track enters the volume delimited by the adjoint source.
52 // In the case a) the info (energy,weight,...) of the adjoint dynamic particle associated to the track
53 // when crossing the external source is registered and in the next event a forward primary is generated. In the other cases b) and c)
54 // The next generated fwd particle is killed before being tracked and the next tracking of an adjoint particle is started directly.
55 //
56 
57 #ifndef G4AdjointSteppingAction_h
58 #define G4AdjointSteppingAction_h 1
59 
60 #include "G4UserSteppingAction.hh"
61 #include "globals.hh"
62 #include "G4ThreeVector.hh"
63 
66 
67 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
68 
70 {
71  public:
74 
75  void UserSteppingAction(const G4Step*);
76 
77  inline void SetExtSourceEMax(G4double Emax){ext_sourceEMax=Emax;}
78  inline void SetStartEvent(G4bool aBool){start_event =aBool;}
79  inline G4bool GetDidAdjParticleReachTheExtSource(){return did_adj_part_reach_ext_source;}
80  inline G4ThreeVector GetLastMomentum(){return last_momentum;}
81  inline G4ThreeVector GetLastPosition(){return last_pos;}
82  inline G4double GetLastEkin(){return last_ekin;}
83  inline G4double GetLastWeight(){return last_weight;}
84  inline void SetPrimWeight(G4double weight){prim_weight=weight;}
85  inline G4ParticleDefinition* GetLastPartDef(){return last_part_def;}
87  theUserAdjointSteppingAction = anAction;}
89  theUserFwdSteppingAction = anAction;}
90  inline void SetAdjointTrackingMode(G4bool aBool){is_adjoint_tracking_mode =aBool;}
91  private:
92 
93  G4double ext_sourceEMax;
94  G4AdjointCrossSurfChecker* theG4AdjointCrossSurfChecker;
95  G4bool start_event;
96 
97  G4bool did_adj_part_reach_ext_source;
98  G4ThreeVector last_momentum, last_pos;
99  G4double last_ekin;
100  G4double last_weight ;
101  G4double prim_weight ;
102  G4ParticleDefinition* last_part_def;
103  G4UserSteppingAction* theUserAdjointSteppingAction;
104  G4UserSteppingAction* theUserFwdSteppingAction;
105  G4bool is_adjoint_tracking_mode;
106 
107 };
108 #endif
109 
void SetAdjointTrackingMode(G4bool aBool)
bool G4bool
Definition: G4Types.hh:79
void UserSteppingAction(const G4Step *)
Definition: G4Step.hh:76
void SetUserForwardSteppingAction(G4UserSteppingAction *anAction)
void SetPrimWeight(G4double weight)
G4ParticleDefinition * GetLastPartDef()
void SetExtSourceEMax(G4double Emax)
void SetUserAdjointSteppingAction(G4UserSteppingAction *anAction)
double G4double
Definition: G4Types.hh:76