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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: G4PAIModelData.hh 72008 2013-07-03 08:46:39Z vnivanch $ 26 // 27 // 27 // ------------------------------------------- 28 // ------------------------------------------------------------------- 28 // 29 // 29 // GEANT4 Class header file 30 // GEANT4 Class header file 30 // 31 // 31 // 32 // 32 // File name: G4PAIPhotData 33 // File name: G4PAIPhotData 33 // 34 // 34 // Author: V. Grichine based on G4PAIM 35 // Author: V. Grichine based on G4PAIModelData code for MT 35 // 36 // 36 // Creation date: 07.10.2013 37 // Creation date: 07.10.2013 37 // 38 // 38 // Modifications: 39 // Modifications: 39 // 40 // 40 // 41 // 41 // Class Description: 42 // Class Description: 42 // 43 // 43 // Implementation of PAIPhotModel internal dat 44 // Implementation of PAIPhotModel internal data class. 44 // This class is extracted from G4PAIPhot in o 45 // This class is extracted from G4PAIPhot in order to provide sharing 45 // of these data between threads. 46 // of these data between threads. 46 // 47 // 47 // Internal data tables are computed for proto 48 // Internal data tables are computed for proton. 48 // 49 // 49 // ------------------------------------------- 50 // ------------------------------------------------------------------- 50 // 51 // 51 52 52 #ifndef G4PAIPhotData_h 53 #ifndef G4PAIPhotData_h 53 #define G4PAIPhotData_h 1 54 #define G4PAIPhotData_h 1 54 55 55 #include <vector> 56 #include <vector> 56 #include "globals.hh" 57 #include "globals.hh" 57 #include "G4PAIxSection.hh" 58 #include "G4PAIxSection.hh" 58 #include "G4SandiaTable.hh" 59 #include "G4SandiaTable.hh" 59 60 60 class G4PhysicsLogVector; 61 class G4PhysicsLogVector; 61 class G4PhysicsTable; 62 class G4PhysicsTable; 62 class G4MaterialCutsCouple; 63 class G4MaterialCutsCouple; 63 class G4PAIPhotModel; 64 class G4PAIPhotModel; 64 65 65 class G4PAIPhotData 66 class G4PAIPhotData 66 { 67 { 67 68 68 public: 69 public: 69 70 70 explicit G4PAIPhotData(G4double tmin, G4doub 71 explicit G4PAIPhotData(G4double tmin, G4double tmax, G4int verbose); 71 72 72 ~G4PAIPhotData(); 73 ~G4PAIPhotData(); 73 74 74 void Initialise(const G4MaterialCutsCouple*, 75 void Initialise(const G4MaterialCutsCouple*, G4double cut, G4PAIPhotModel*); 75 76 76 G4double DEDXPerVolume(G4int coupleIndex, G4 77 G4double DEDXPerVolume(G4int coupleIndex, G4double scaledTkin, 77 G4double cut) const; 78 G4double cut) const; 78 79 79 G4double CrossSectionPerVolume(G4int coupleI 80 G4double CrossSectionPerVolume(G4int coupleIndex, G4double scaledTkin, 80 G4double tcut, G4double tmax) const; 81 G4double tcut, G4double tmax) const; 81 82 82 G4double GetPlasmonRatio( G4int coupleIndex, 83 G4double GetPlasmonRatio( G4int coupleIndex, G4double scaledTkin ) const; 83 84 84 G4double SampleAlongStepTransfer(G4int coupl 85 G4double SampleAlongStepTransfer(G4int coupleIndex, G4double kinEnergy, 85 G4double scaledTkin, 86 G4double scaledTkin, 86 G4double stepFactor) const; 87 G4double stepFactor) const; 87 G4double SampleAlongStepPhotonTransfer(G4int 88 G4double SampleAlongStepPhotonTransfer(G4int coupleIndex, G4double kinEnergy, 88 G4double scaledTkin, 89 G4double scaledTkin, 89 G4double stepFactor) const; 90 G4double stepFactor) const; 90 G4double SampleAlongStepPlasmonTransfer(G4in 91 G4double SampleAlongStepPlasmonTransfer(G4int coupleIndex, G4double kinEnergy, 91 G4double scaledTkin, 92 G4double scaledTkin, 92 G4double stepFactor) const; 93 G4double stepFactor) const; 93 94 94 G4double SamplePostStepTransfer(G4int couple 95 G4double SamplePostStepTransfer(G4int coupleIndex, 95 G4double scaledTkin) const; 96 G4double scaledTkin) const; 96 G4double SamplePostStepPhotonTransfer(G4int 97 G4double SamplePostStepPhotonTransfer(G4int coupleIndex, 97 G4double scaledTkin) const; 98 G4double scaledTkin) const; 98 G4double SamplePostStepPlasmonTransfer(G4int 99 G4double SamplePostStepPlasmonTransfer(G4int coupleIndex, 99 G4double scaledTkin) const; 100 G4double scaledTkin) const; 100 101 101 // hide assignment operator << 102 G4PAIPhotData & operator=(const G4PAIPhotDa << 103 G4PAIPhotData(const G4PAIPhotData&) = delet << 104 << 105 private: 102 private: 106 103 107 G4double GetEnergyTransfer(G4int coupleIndex 104 G4double GetEnergyTransfer(G4int coupleIndex, size_t iPlace, 108 G4double position) const; 105 G4double position) const; 109 G4double GetEnergyPhotonTransfer(G4int coupl 106 G4double GetEnergyPhotonTransfer(G4int coupleIndex, size_t iPlace, 110 G4double position) const; 107 G4double position) const; 111 G4double GetEnergyPlasmonTransfer(G4int coup 108 G4double GetEnergyPlasmonTransfer(G4int coupleIndex, size_t iPlace, 112 G4double position) const; 109 G4double position) const; 113 110 >> 111 // hide assignment operator >> 112 G4PAIPhotData & operator=(const G4PAIPhotData &right) = delete; >> 113 G4PAIPhotData(const G4PAIPhotData&) = delete; >> 114 114 G4int fTotBin; 115 G4int fTotBin; 115 G4double fLowestKineticEnergy; 116 G4double fLowestKineticEnergy; 116 G4double fHighestKineticEnergy; 117 G4double fHighestKineticEnergy; 117 118 118 G4PhysicsLogVector* fParticleEnergyVector; 119 G4PhysicsLogVector* fParticleEnergyVector; 119 120 120 G4PAIxSection fPAIxSection; 121 G4PAIxSection fPAIxSection; 121 G4SandiaTable fSandia; 122 G4SandiaTable fSandia; 122 123 123 std::vector<G4PhysicsTable*> fPAIxscBan 124 std::vector<G4PhysicsTable*> fPAIxscBank; 124 std::vector<G4PhysicsTable*> fPAIphoton 125 std::vector<G4PhysicsTable*> fPAIphotonBank; 125 std::vector<G4PhysicsTable*> fPAIplasmo 126 std::vector<G4PhysicsTable*> fPAIplasmonBank; 126 127 127 std::vector<G4PhysicsTable*> fPAIdEdxBa 128 std::vector<G4PhysicsTable*> fPAIdEdxBank; 128 std::vector<G4PhysicsLogVector*> fdEdxTable 129 std::vector<G4PhysicsLogVector*> fdEdxTable; 129 130 130 std::vector<G4PhysicsLogVector*> fdNdxCutTa 131 std::vector<G4PhysicsLogVector*> fdNdxCutTable; 131 std::vector<G4PhysicsLogVector*> fdNdxCutPh 132 std::vector<G4PhysicsLogVector*> fdNdxCutPhotonTable; 132 std::vector<G4PhysicsLogVector*> fdNdxCutPl 133 std::vector<G4PhysicsLogVector*> fdNdxCutPlasmonTable; 133 134 134 std::vector<G4PhysicsLogVector*> fdEdxCutTa 135 std::vector<G4PhysicsLogVector*> fdEdxCutTable; >> 136 135 }; 137 }; 136 138 137 #endif 139 #endif 138 140 139 141 140 142 141 143 142 144 143 145 144 146 145 147