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Arce, June-2014 Conversion neutron_hp to 27 // P. Arce, June-2014 Conversion neutron_hp to particle_hp 28 // 28 // 29 #ifndef G4ParticleHPLabAngularEnergy_h 29 #ifndef G4ParticleHPLabAngularEnergy_h 30 #define G4ParticleHPLabAngularEnergy_h 1 30 #define G4ParticleHPLabAngularEnergy_h 1 31 31 32 #include "G4InterpolationManager.hh" 32 #include "G4InterpolationManager.hh" 33 #include "G4Neutron.hh" 33 #include "G4Neutron.hh" 34 #include "G4ParticleHPInterpolator.hh" 34 #include "G4ParticleHPInterpolator.hh" 35 #include "G4ParticleHPVector.hh" 35 #include "G4ParticleHPVector.hh" 36 #include "G4ReactionProduct.hh" 36 #include "G4ReactionProduct.hh" 37 #include "G4VParticleHPEnergyAngular.hh" 37 #include "G4VParticleHPEnergyAngular.hh" 38 #include "G4ios.hh" 38 #include "G4ios.hh" 39 #include "globals.hh" 39 #include "globals.hh" 40 40 41 #include <fstream> 41 #include <fstream> 42 42 43 class G4ParticleHPLabAngularEnergy : public G4 43 class G4ParticleHPLabAngularEnergy : public G4VParticleHPEnergyAngular 44 { 44 { 45 public: 45 public: 46 G4ParticleHPLabAngularEnergy() 46 G4ParticleHPLabAngularEnergy() 47 { 47 { 48 theEnergies = nullptr; 48 theEnergies = nullptr; 49 theData = nullptr; 49 theData = nullptr; 50 nCosTh = nullptr; 50 nCosTh = nullptr; 51 theSecondManager = nullptr; 51 theSecondManager = nullptr; 52 nEnergies = -1; 52 nEnergies = -1; 53 currentMeanEnergy = -1.0; 53 currentMeanEnergy = -1.0; 54 } 54 } 55 ~G4ParticleHPLabAngularEnergy() override 55 ~G4ParticleHPLabAngularEnergy() override 56 { 56 { 57 delete[] theEnergies; 57 delete[] theEnergies; 58 delete[] nCosTh; 58 delete[] nCosTh; 59 if (theData != nullptr) { 59 if (theData != nullptr) { 60 for (G4int i = 0; i < nEnergies; i++) 60 for (G4int i = 0; i < nEnergies; i++) 61 delete[] theData[i]; 61 delete[] theData[i]; 62 delete[] theData; 62 delete[] theData; 63 } 63 } 64 delete[] theSecondManager; 64 delete[] theSecondManager; 65 } 65 } 66 66 67 public: 67 public: 68 void Init(std::istream& aDataFile) overrid 68 void Init(std::istream& aDataFile) override; 69 G4ReactionProduct* Sample(G4double anEnerg 69 G4ReactionProduct* Sample(G4double anEnergy, G4double massCode, G4double mass) override; 70 G4double MeanEnergyOfThisInteraction() ove 70 G4double MeanEnergyOfThisInteraction() override { return currentMeanEnergy; } 71 71 72 private: 72 private: 73 // number of incoming neutron energies 73 // number of incoming neutron energies 74 G4int nEnergies; 74 G4int nEnergies; 75 // Interpol between neutron energies 75 // Interpol between neutron energies 76 G4InterpolationManager theManager; 76 G4InterpolationManager theManager; 77 // Incoming neutron energies 77 // Incoming neutron energies 78 G4double* theEnergies; 78 G4double* theEnergies; 79 // number of directioncosines; parallel to 79 // number of directioncosines; parallel to theEnergies 80 G4int* nCosTh; 80 G4int* nCosTh; 81 // knows the interpolation between these s 81 // knows the interpolation between these stores 82 G4InterpolationManager* theSecondManager; 82 G4InterpolationManager* theSecondManager; 83 // vectors of secondary energy, haufigkeit 83 // vectors of secondary energy, haufigkeit; parallel to theEnergies 84 G4ParticleHPVector** theData; 84 G4ParticleHPVector** theData; 85 85 86 // utility interpolator 86 // utility interpolator 87 G4ParticleHPInterpolator theInt; 87 G4ParticleHPInterpolator theInt; 88 88 89 // cashed value of mean secondary energy i 89 // cashed value of mean secondary energy in this event. 90 G4double currentMeanEnergy; 90 G4double currentMeanEnergy; 91 }; 91 }; 92 #endif 92 #endif 93 93