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Geant4/processes/electromagnetic/adjoint/include/G4AdjointeIonisationModel.hh

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Differences between /processes/electromagnetic/adjoint/include/G4AdjointeIonisationModel.hh (Version 11.3.0) and /processes/electromagnetic/adjoint/include/G4AdjointeIonisationModel.hh (Version 10.0)


  1 //                                                  1 //
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 25 //                                                 25 //
                                                   >>  26 // $Id: G4AdjointeIonisationModel.hh 68044 2013-03-13 14:29:07Z gcosmo $
                                                   >>  27 //
                                                   >>  28 /////////////////////////////////////////////////////////////////////////////////
                                                   >>  29 //      Module:   G4AdjointeIonisationModel
                                                   >>  30 //  Author:         L. Desorgher
                                                   >>  31 //  Organisation:   SpaceIT GmbH
                                                   >>  32 //  Contract: ESA contract 21435/08/NL/AT
                                                   >>  33 //  Customer:       ESA/ESTEC
 26 //////////////////////////////////////////////     34 /////////////////////////////////////////////////////////////////////////////////
 27 //  Class:    G4AdjointeIonisationModel        << 
 28 //  Author:         L. Desorgher               << 
 29 //  Organisation:   SpaceIT GmbH               << 
 30 //                                                 35 //
 31 //  Adjoint EM model for discrete reverse e- i <<  36 // CHANGE HISTORY
                                                   >>  37 // --------------
                                                   >>  38 //      ChangeHistory: 
                                                   >>  39 //     September 2009 creation by L. Desorgher. Separate the concrete ionisation stuff from G4VEMAdjointModel     
                                                   >>  40 //
                                                   >>  41 //-------------------------------------------------------------
                                                   >>  42 //  Documentation:
                                                   >>  43 //    Adjoint EM model for discrete reverse e- ionisation
 32 //                                                 44 //
 33 ////////////////////////////////////////////// << 
 34                                                    45 
 35 #ifndef G4AdjointeIonisationModel_h                46 #ifndef G4AdjointeIonisationModel_h
 36 #define G4AdjointeIonisationModel_h 1              47 #define G4AdjointeIonisationModel_h 1
 37                                                    48 
 38 #include "globals.hh"                              49 #include "globals.hh"
 39 #include "G4VEmAdjointModel.hh"                    50 #include "G4VEmAdjointModel.hh"
 40                                                    51 
 41 class G4AdjointeIonisationModel : public G4VEm <<  52 class G4AdjointeIonisationModel: public G4VEmAdjointModel
 42 {                                                  53 {
 43  public:                                       << 
 44   G4AdjointeIonisationModel();                 << 
 45                                                << 
 46   ~G4AdjointeIonisationModel() override;       << 
 47                                                    54 
 48   void SampleSecondaries(const G4Track& aTrack <<  55 public: //methods
 49                          G4ParticleChange* fPa << 
 50                                                    56 
 51   G4double DiffCrossSectionPerAtomPrimToSecond <<  57 //Constructor, destructor
 52     G4double kinEnergyProj,  // kin energy of  <<  58   G4AdjointeIonisationModel();
 53     G4double kinEnergyProd,  // kinetic energy << 
 54     G4double Z, G4double A = 0.) override;     << 
 55                                                    59 
 56   G4AdjointeIonisationModel(G4AdjointeIonisati <<  60   virtual ~G4AdjointeIonisationModel();
 57   G4AdjointeIonisationModel& operator=(const G << 
 58     delete;                                    << 
 59                                                    61 
 60  private:                                      <<  62 //Concrete implementation or virtual methods
 61   G4double DiffCrossSectionMoller(G4double kin <<  63   
 62                                   G4double kin <<  64   virtual void SampleSecondaries(const G4Track& aTrack,
                                                   >>  65                                 G4bool IsScatProjToProjCase,
                                                   >>  66         G4ParticleChange* fParticleChange);
                                                   >>  67   
                                                   >>  68   virtual G4double DiffCrossSectionPerAtomPrimToSecond(
                                                   >>  69                                       G4double kinEnergyProj,  // kinetic energy of the primary particle before the interaction 
                                                   >>  70                                       G4double kinEnergyProd, // kinetic energy of the secondary particle 
                                                   >>  71               G4double Z, 
                                                   >>  72                                       G4double A = 0.);
                                                   >>  73 
                                                   >>  74         
                                                   >>  75 private:  
                                                   >>  76   G4double DiffCrossSectionMoller(G4double kinEnergyProj,G4double kinEnergyProd);
                                                   >>  77 private: //attributes   
                                                   >>  78    G4bool WithRapidSampling;
                                                   >>  79    
 63                                                    80 
 64   G4bool fWithRapidSampling = false;           << 
 65 };                                                 81 };
 66 #endif                                             82 #endif
                                                   >>  83 
 67                                                    84