// G4MuonNucleusInteractionModel.hh // // M.Takahata (Makoto.Takahata@cern.ch) // // ----------------------------------------------------------------------- // This class is the translation of Geant3/Gheisha routine GMUNU + GMUSIG // , which calculate the final state of outgoing muon and force cascade // through pion-Nucleus inelastic scattering. // ----------------------------------------------------------------------- #ifndef G4MuonNucleusInteractionModel_h #define G4MuonNucleusInteractionModel_h 1 #include "G4LeptonHadronInteractionModel.hh" #include "G4DynamicParticle.hh" #include "G4ParticleTypes.hh" #include "G4PhysicsLogVector.hh" #include "G4LEPionPlusInelastic.hh" #include "G4LEPionMinusInelastic.hh" #include "G4HEPionPlusInelastic.hh" #include "G4HEPionMinusInelastic.hh" class G4MuonNucleusInteractionModel : public G4LeptonHadronInteractionModel { public: G4MuonNucleusInteractionModel(); ~G4MuonNucleusInteractionModel(); void makePhysicsVector(); G4double computeMicroscopicCrossSection(const G4Track &muonTrack); G4VParticleChange* applyInteractionModel(const G4Track &muonTrack, G4Nucleus &targetNucleus); private: // member functions void invokePionNucleus(const G4Track &pionTrack, G4Nucleus &targetNucleus); G4double computeDifferentialCrossSection (G4double initialEnergy, G4double finalEnergy, G4double cosTheta); // for physics vector static G4double tetal[35], xeml[23]; G4PhysicsLogVector *theCoefficientVector; G4int Nbin; G4double kEmin, kEmax; // kinematic G4double cosTheta; G4VParticleChange* pionChange; // pi-N models G4double cascadeModelMarginalEnergy; G4LEPionPlusInelastic* LEPionPlusInelastic; G4LEPionMinusInelastic* LEPionMinusInelastic; G4HEPionPlusInelastic* HEPionPlusInelastic; G4HEPionMinusInelastic* HEPionMinusInelastic; }; #endif