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Please see the license in the file LICENSE and URL above * 16 // * for the full disclaimer and the limitatio 16 // * for the full disclaimer and the limitation of liability. * 17 // * 17 // * * 18 // * This code implementation is the result 18 // * This code implementation is the result of the scientific and * 19 // * technical work of the GEANT4 collaboratio 19 // * technical work of the GEANT4 collaboration. * 20 // * By using, copying, modifying or distri 20 // * By using, copying, modifying or distributing the software (or * 21 // * any work based on the software) you ag 21 // * any work based on the software) you agree to acknowledge its * 22 // * use in resulting scientific publicati 22 // * use in resulting scientific publications, and indicate your * 23 // * acceptance of all terms of the Geant4 Sof 23 // * acceptance of all terms of the Geant4 Software license. * 24 // ******************************************* 24 // ******************************************************************** 25 // 25 // >> 26 // $Id: G4AdjointeIonisationModel.hh 69844 2013-05-16 09:19:33Z 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" >> 51 #include "G4PEEffectModel.hh" 40 52 41 class G4AdjointeIonisationModel : public G4VEm << 53 class G4AdjointeIonisationModel: public G4VEmAdjointModel 42 { 54 { 43 public: << 44 G4AdjointeIonisationModel(); << 45 << 46 ~G4AdjointeIonisationModel() override; << 47 55 48 void SampleSecondaries(const G4Track& aTrack << 56 public: //methods 49 G4ParticleChange* fPa << 50 57 51 G4double DiffCrossSectionPerAtomPrimToSecond << 58 //Constructor, destructor 52 G4double kinEnergyProj, // kin energy of << 59 G4AdjointeIonisationModel(); 53 G4double kinEnergyProd, // kinetic energy << 54 G4double Z, G4double A = 0.) override; << 55 60 56 G4AdjointeIonisationModel(G4AdjointeIonisati << 61 virtual ~G4AdjointeIonisationModel(); 57 G4AdjointeIonisationModel& operator=(const G << 58 delete; << 59 62 60 private: << 63 //Concrete implementation or virtual methods 61 G4double DiffCrossSectionMoller(G4double kin << 64 62 G4double kin << 65 virtual void SampleSecondaries(const G4Track& aTrack, >> 66 G4bool IsScatProjToProjCase, >> 67 G4ParticleChange* fParticleChange); >> 68 >> 69 virtual G4double DiffCrossSectionPerAtomPrimToSecond( >> 70 G4double kinEnergyProj, // kinetic energy of the primary particle before the interaction >> 71 G4double kinEnergyProd, // kinetic energy of the secondary particle >> 72 G4double Z, >> 73 G4double A = 0.); >> 74 >> 75 >> 76 private: >> 77 G4double DiffCrossSectionMoller(G4double kinEnergyProj,G4double kinEnergyProd); >> 78 private: //attributes >> 79 G4bool WithRapidSampling; >> 80 63 81 64 G4bool fWithRapidSampling = false; << 65 }; 82 }; 66 #endif 83 #endif >> 84 67 85