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GB01BOptrMultiParticleChangeCrossSection.hh
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26 // $Id: $
27 //-----------------------------------------------------------------
28 //
29 // GB01BOptrMultiParticleChangeCrossSection
30 //
31 // Class Description:
32 // A G4VBiasingOperator concrete implementation example to
33 // illustrate how an operator can make use of an other operator.
34 // In the present case, the GB01BOptrChangeCrossSection
35 // operator, that is made to bias processes of one particle
36 // type is instancied several times, one for each particle type
37 // to bias.
38 //
39 //-----------------------------------------------------------------
40 //
41 
42 #ifndef GB01BOptrMultiParticleChangeCrossSection_hh
43 #define GB01BOptrMultiParticleChangeCrossSection_hh 1
44 
45 #include "G4VBiasingOperator.hh"
48 
49 #include <map>
50 
52 public:
55 
56  // ---------------------------------
57  // -- Method specific to this class:
58  // ---------------------------------
59  // -- Each particle type for which its name is passed will be biased; *provided*
60  // -- that the proper calls to biasingPhysics->Bias(particleName) have been done
61  // -- in the main program.
62  void AddParticle( G4String particleName );
63 
64 
65 private:
66  // -----------------------------
67  // -- Mandatory from base class:
68  // -----------------------------
69  // -- This method returns a biasing operation that will bias the physics process occurence:
70  virtual G4VBiasingOperation*
71  ProposeOccurenceBiasingOperation(const G4Track* track,
72  const G4BiasingProcessInterface* callingProcess);
73  // -- Methods not used:
74  virtual G4VBiasingOperation*
75  ProposeFinalStateBiasingOperation(const G4Track*, const G4BiasingProcessInterface*)
76  {return 0;}
77  virtual G4VBiasingOperation*
78  ProposeNonPhysicsBiasingOperation(const G4Track*, const G4BiasingProcessInterface*)
79  {return 0;}
80 
81 
82 private:
83  // -- ("using" is to avoid compiler complaining against (false) method shadowing.)
85 
86  // -- Optionnal base class method implementation.
87  // -- This method is called to inform the operator that a proposed operation has been applied.
88  // -- In the present case, it means that a physical interaction occured (interaction at
89  // -- PostStepDoIt level):
90  virtual void OperationApplied( const G4BiasingProcessInterface* callingProcess,
91  G4BiasingAppliedCase biasingCase,
92  G4VBiasingOperation* occurenceOperationApplied,
93  G4double weightForOccurenceInteraction,
94  G4VBiasingOperation* finalStateOperationApplied,
95  const G4VParticleChange* particleChangeProduced );
96 
97 
98 public:
99  // -- Optionnal base class method. It is called at the time a tracking of a particle starts:
100  void StartTracking( const G4Track* track );
101 
102 private:
103  // -- List of associations between particle types and biasing operators:
104  std::map < const G4ParticleDefinition*,
105  GB01BOptrChangeCrossSection* > fBOptrForParticle;
106  std::vector < const G4ParticleDefinition* > fParticlesToBias;
107  GB01BOptrChangeCrossSection* fCurrentOperator;
108 
109  // -- count number of biased interations for current track:
110  G4int fnInteractions;
111 };
112 
113 #endif
virtual void OperationApplied(const G4BiasingProcessInterface *callingProcess, G4BiasingAppliedCase biasingCase, G4VBiasingOperation *operationApplied, const G4VParticleChange *particleChangeProduced)
int G4int
Definition: G4Types.hh:78
G4BiasingAppliedCase
double G4double
Definition: G4Types.hh:76