source: trunk/source/processes/electromagnetic/adjoint/include/G4AdjointComptonModel.hh

Last change on this file was 1337, checked in by garnier, 14 years ago

tag geant4.9.4 beta 1 + modifs locales

File size: 4.3 KB
Line 
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25//
26// $Id: G4AdjointComptonModel.hh,v 1.5 2009/11/20 10:31:20 ldesorgh Exp $
27// GEANT4 tag $Name: geant4-09-04-beta-01 $
28//
29/////////////////////////////////////////////////////////////////////////////////
30//      Class:          G4AdjointComptonModel
31//      Author:         L. Desorgher
32//      Organisation:   SpaceIT GmbH
33//      Contract:       ESA contract 21435/08/NL/AT
34//      Customer:       ESA/ESTEC
35/////////////////////////////////////////////////////////////////////////////////
36//
37// CHANGE HISTORY
38// --------------
39//      ChangeHistory:
40//              1 September 2007 creation by L. Desorgher
41//              11 November 2009 Implement the use of approximated diffCS as an alternative of CSMatrix.               
42//
43//-------------------------------------------------------------
44//      Documentation:
45//              Model for the adjoint compton scattering.
46//
47
48#ifndef G4AdjointComptonModel_h
49#define G4AdjointComptonModel_h 1
50
51
52#include "globals.hh"
53#include "G4VEmAdjointModel.hh"
54#include "G4VEmProcess.hh"
55class G4AdjointComptonModel: public G4VEmAdjointModel
56
57{
58public:
59
60  G4AdjointComptonModel();
61  ~G4AdjointComptonModel(); 
62 
63 
64  virtual void SampleSecondaries(const G4Track& aTrack,
65                                G4bool IsScatProjToProjCase,
66                                G4ParticleChange* fParticleChange);
67  void RapidSampleSecondaries(const G4Track& aTrack,
68                                G4bool IsScatProjToProjCase,
69                                G4ParticleChange* fParticleChange);
70 
71  virtual G4double DiffCrossSectionPerAtomPrimToScatPrim( 
72                                      G4double kinEnergyProj,  // kinetic energy of the primary particle before the interaction
73                                      G4double kinEnergyScatProj, // kinetic energy of the primary particle after the interaction
74                                      G4double Z, 
75                                      G4double A = 0.); 
76  virtual G4double DiffCrossSectionPerAtomPrimToSecond(
77                                      G4double kinEnergyProj,  // kinetic energy of the primary particle before the interaction
78                                      G4double kinEnergyProd, // kinetic energy of the secondary particle
79                                      G4double Z, 
80                                      G4double A = 0.);
81 
82  virtual G4double GetSecondAdjEnergyMaxForScatProjToProjCase(G4double PrimAdjEnergy);
83  virtual G4double GetSecondAdjEnergyMinForProdToProjCase(G4double PrimAdjEnergy);
84 
85 
86  virtual G4double AdjointCrossSection(const G4MaterialCutsCouple* aCouple,
87                                             G4double primEnergy,
88                                             G4bool IsScatProjToProjCase);
89
90 
91 
92  inline void SetDirectProcess(G4VEmProcess* aProcess){theDirectEMProcess = aProcess;};                       
93 
94private:
95  G4VEmProcess* theDirectEMProcess;
96  G4double G4direct_CS;
97 
98   
99};
100
101#endif
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