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Geant4/examples/extended/hadronic/Hadr02/include/IonCRMCPhysics.hh

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  1 //
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 25 //
 26 /// \file hadronic/Hadr02/include/IonCRMCPhysics.hh
 27 /// \brief Definition of the IonCRMCPhysics class
 28 //
 29 //
 30 //---------------------------------------------------------------------------
 31 //
 32 // Header:    IonCRMCPhysics
 33 //
 34 // Author:    2018 Alberto Ribon
 35 //
 36 // This is a variant of G4IonPhysics whereby CRMC is used for modeling
 37 // final-state for ion nuclear inelastic interactions at very high energies.
 38 // The inelastic hadronic cross sections are the same as in G4IonPhysics.
 39 //
 40 // Modified:
 41 // -  18-May-2021 Alberto Ribon : Used the latest Geant4-CRMC interface.
 42 //
 43 //---------------------------------------------------------------------------
 44 //
 45 #ifndef G4IonCRMCPhysics_h
 46 #define G4IonCRMCPhysics_h 1
 47 
 48 #include "G4VHadronPhysics.hh"
 49 #include "globals.hh"
 50 
 51 class G4HadronicInteraction;
 52 class G4VCrossSectionDataSet;
 53 
 54 class IonCRMCPhysics : public G4VPhysicsConstructor
 55 {
 56   public:
 57     IonCRMCPhysics(G4int ver = 0);
 58     virtual ~IonCRMCPhysics();
 59     void ConstructParticle() override;
 60     void ConstructProcess() override;
 61 
 62   private:
 63     void AddProcess(const G4String&, G4ParticleDefinition*, G4HadronicInteraction*,
 64                     G4HadronicInteraction*, G4HadronicInteraction*, G4VCrossSectionDataSet*);
 65     int fModel;  // 0:EPOS-LHC, 1:EPOS-1.99, 2:QGSJET:01, 6:SIBYLL-2.3,
 66     static const std::array<std::string, 13>
 67       fModelNames;  // 7:QGSJETII-04, 11:QGSJETII-03, 12:DPMJET-3.06
 68     G4int fVerbose;
 69 };
 70 
 71 #endif
 72