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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 // GEANT4 physics class: G4ChipsAntiBaryonInel 26 // GEANT4 physics class: G4ChipsAntiBaryonInelasticXS -- header file 27 // Created: M.V. Kossov, CERN/ITEP(Moscow), 20 27 // Created: M.V. Kossov, CERN/ITEP(Moscow), 20-Dec-01 28 // The last update: M.V. Kossov, CERN/ITEP (Mo 28 // The last update: M.V. Kossov, CERN/ITEP (Moscow) 17-May-02 29 // 29 // 30 // ------------------------------------------- 30 // ------------------------------------------------------------------------------------- 31 // Short description: Cross-sections extracted 31 // Short description: Cross-sections extracted (by W.Pokorski) from the CHIPS package for 32 // anti-baryoninteractions. Original author: M 32 // anti-baryoninteractions. Original author: M. Kossov 33 // ------------------------------------------- 33 // ------------------------------------------------------------------------------------- 34 // 34 // 35 35 36 #ifndef G4ChipsAntiBaryonInelasticXS_h 36 #ifndef G4ChipsAntiBaryonInelasticXS_h 37 #define G4ChipsAntiBaryonInelasticXS_h 1 37 #define G4ChipsAntiBaryonInelasticXS_h 1 38 38 39 #include "G4ParticleTable.hh" 39 #include "G4ParticleTable.hh" 40 #include "G4NucleiProperties.hh" 40 #include "G4NucleiProperties.hh" 41 #include <vector> 41 #include <vector> 42 #include "G4VCrossSectionDataSet.hh" 42 #include "G4VCrossSectionDataSet.hh" 43 43 44 class G4ChipsAntiBaryonInelasticXS : public 44 class G4ChipsAntiBaryonInelasticXS : public G4VCrossSectionDataSet 45 { 45 { 46 public: 46 public: 47 47 48 G4ChipsAntiBaryonInelasticXS(); 48 G4ChipsAntiBaryonInelasticXS(); 49 49 50 ~G4ChipsAntiBaryonInelasticXS(); 50 ~G4ChipsAntiBaryonInelasticXS(); 51 51 52 static const char* Default_Name() {return "C 52 static const char* Default_Name() {return "ChipsAntiBaryonInelasticXS";} 53 53 54 virtual void CrossSectionDescription(std::os << 55 << 56 virtual G4bool IsIsoApplicable(const G4Dynam 54 virtual G4bool IsIsoApplicable(const G4DynamicParticle* Pt, G4int Z, G4int A, 57 const G4Element* elm, 55 const G4Element* elm, 58 const G4Material* mat ); 56 const G4Material* mat ); 59 57 60 // At present momentum (pMom) in MeV/c, CS i 58 // At present momentum (pMom) in MeV/c, CS in mb (@@ Units) 61 virtual G4double GetIsoCrossSection(const G4 59 virtual G4double GetIsoCrossSection(const G4DynamicParticle*, G4int tgZ, G4int A, 62 const G4Isotope* iso = 0, 60 const G4Isotope* iso = 0, 63 const G4Element* elm = 0, 61 const G4Element* elm = 0, 64 const G4Material* mat = 0); 62 const G4Material* mat = 0); 65 63 66 virtual G4double GetChipsCrossSection(G4doub 64 virtual G4double GetChipsCrossSection(G4double momentum, G4int Z, G4int N, G4int pdg); 67 65 68 private: 66 private: 69 G4double CalculateCrossSection(G4int F, G4in 67 G4double CalculateCrossSection(G4int F, G4int I, G4int PDG, G4int Z, 70 G4int N, G4do 68 G4int N, G4double Momentum); 71 69 72 G4double CrossSectionLin(G4int targZ, G4int 70 G4double CrossSectionLin(G4int targZ, G4int targN, G4double P); 73 G4double CrossSectionLog(G4int targZ, G4int 71 G4double CrossSectionLog(G4int targZ, G4int targN, G4double lP); 74 G4double CrossSectionFormula(G4int targZ, G4 72 G4double CrossSectionFormula(G4int targZ, G4int targN, G4double P, G4double lP); 75 G4double EquLinearFit(G4double X, G4int N, G 73 G4double EquLinearFit(G4double X, G4int N, G4double X0, G4double DX, G4double* Y); 76 // Body 74 // Body 77 private: 75 private: 78 G4double* lastLEN; // Pointer to the last ar 76 G4double* lastLEN; // Pointer to the last array of LowEnergy cross sections 79 G4double* lastHEN; // Pointer to the last ar 77 G4double* lastHEN; // Pointer to the last array of HighEnergy cross sections 80 G4int lastN; // The last N of calculat 78 G4int lastN; // The last N of calculated nucleus 81 G4int lastZ; // The last Z of calculat 79 G4int lastZ; // The last Z of calculated nucleus 82 G4double lastP; // Last used in the cross 80 G4double lastP; // Last used in the cross section Momentum 83 G4double lastTH; // Last value of the Mome 81 G4double lastTH; // Last value of the Momentum Threshold 84 G4double lastCS; // Last value of the Cros 82 G4double lastCS; // Last value of the Cross Section 85 G4int lastI; // The last position in t 83 G4int lastI; // The last position in the DAMDB 86 std::vector<G4double*>* LEN; // Vector of p 84 std::vector<G4double*>* LEN; // Vector of pointers to LowEnProtonCrossSection 87 std::vector<G4double*>* HEN; // Vector of p 85 std::vector<G4double*>* HEN; // Vector of pointers to HighEnProtonCrossSection 88 << 89 G4int j=0; // A#0f Z/N-re << 90 std::vector <G4int> colN; // Vector of N fo << 91 std::vector <G4int> colZ; // Vector of Z fo << 92 std::vector <G4double> colP; // Vector of l << 93 std::vector <G4double> colTH; // Vector of e << 94 std::vector <G4double> colCS; // Vector of l << 95 << 96 }; 86 }; 97 87 98 #endif 88 #endif 99 89