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geant4/examples/advanced/radioprotection/include/RemSimHadronicBinary.hh
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//
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// * DISCLAIMER *
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// * RemSimHadronicBinary.hh *
// * *
// **************************************
//
// $Id: RemSimHadronicBinary.hh,v 1.1 2004/11/23 14:37:47 guatelli Exp $
// GEANT4 tag $Name: geant4-07-00-cand-01 $
//
// Author : Susanna Guatelli, guatelli@ge.infn.it
//
#ifndef RemSimHadronicBinary_h
#define RemSimHadronicBinary_h 1
#include "G4VPhysicsConstructor.hh"
#include "globals.hh"
#include "G4QGSParticipants.hh"
#include "G4QGSModel.hh"
class G4ProtonInelasticCrossSection;
class G4NeutronInelasticCrossSection;
class G4PiNuclearCrossSection;
class G4TripathiCrossSection;
class G4IonsShenCrossSection;
class G4BinaryCascade;
class G4LElastic;
class G4CascadeInterface;
class G4BinaryLightIonReaction;
class G4LEProtonInelastic;
class G4LENeutronInelastic;
class G4LEPionPlusInelastic;
class G4LEPionMinusInelastic;
class G4LEAlphaInelastic;
class G4LFission;
class G4LCapture;
class G4TheoFSGenerator;
class G4GeneratorPrecompoundInterface;
class G4ExcitationHandler;
class G4PreCompoundModel;
class G4QGSMFragmentation;
class G4ExcitedStringDecay;
class RemSimHadronicBinary: public G4VPhysicsConstructor
{
public:
RemSimHadronicBinary(const G4String& name = "hadronic-binary");
virtual ~RemSimHadronicBinary();
protected:
// Construct particle and physics
void ConstructParticle(){};
void ConstructProcess();
private:
G4ProtonInelasticCrossSection* proton_XC;
G4NeutronInelasticCrossSection* neutron_XC;
G4PiNuclearCrossSection* pion_XC;
G4TripathiCrossSection* tripathi;
G4IonsShenCrossSection* shen;
G4LElastic* elastic_model;
G4BinaryLightIonReaction* binary_ion_model;
G4BinaryCascade* binarycascade_model;
G4LEProtonInelastic* LEP_proton_model;
G4LENeutronInelastic* LEP_neutron_model;
G4LEPionPlusInelastic* LEP_pip_model;
G4LEPionMinusInelastic* LEP_pim_model;
G4LEAlphaInelastic* LEP_alpha_model;
G4LFission* nfission_model;
G4LCapture* ncapture_model;
G4TheoFSGenerator* QGSP_model;
G4GeneratorPrecompoundInterface* theCascade;
G4ExcitationHandler* theHandler;
G4PreCompoundModel* thePreEquilib;
G4QGSMFragmentation* theFragmentation;
G4ExcitedStringDecay* theStringDecay;
G4QGSModel<G4QGSParticipants> theStringModel;
};
#endif