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

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 25 //
 26 /// \file hadronic/Hadr02/include/CRMC_FTFP_BERT.hh
 27 /// \brief Definition of the CRMC_FTFP_BERT class
 28 //
 29 //
 30 //---------------------------------------------------------------------------
 31 //
 32 // ClassName: CRMC_FTFP_BERT
 33 //
 34 // Author:    2018 Alberto Ribon
 35 //
 36 // This is a variant of the FTFP_BERT physics list, whereby CRMC is used
 37 // for modeling final-state pion- , kaon- , proton- , neutron- and
 38 // ion-nuclear inelastic interactions at very high energies (above a
 39 // threshold defined in HadronPhysicsCRMC_FTFP_BERT and IonCRMCPhysics).
 40 // For the remaining inelastic interactions (i.e. hyperon- , antihyperon- ,
 41 // antinucleon- and light anti-ion-nuclear interactions, as well as
 42 // for all elastic final-state interactions, and for all elastic and
 43 // inelastic hadronic cross sections), the usual Geant4 approach, as in
 44 // FTFP_BERT is used.
 45 //
 46 // Modified:
 47 // -  18-May-2021 Alberto Ribon : Migrated to non-templated physics list.
 48 //
 49 //----------------------------------------------------------------------------
 50 //
 51 #ifndef CRMC_FTFP_BERT_h
 52 #define CRMC_FTFP_BERT_h 1
 53 
 54 #include "G4VModularPhysicsList.hh"
 55 #include "globals.hh"
 56 
 57 class CRMC_FTFP_BERT : public G4VModularPhysicsList
 58 {
 59   public:
 60     CRMC_FTFP_BERT(G4int ver = 1);
 61     virtual ~CRMC_FTFP_BERT() = default;
 62 
 63     CRMC_FTFP_BERT(const CRMC_FTFP_BERT&) = delete;
 64     CRMC_FTFP_BERT& operator=(const CRMC_FTFP_BERT&) = delete;
 65 };
 66 
 67 #endif
 68