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geant4/examples/extended/exoticphysics/channeling/include/ExExChHadronElasticPhysics.hh
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2016-12-09 12:35:28 +01:00

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/// \file channeling/include/ExExChHadronElasticPhysics.hh
/// \brief Definition of the ExExChHadronElasticPhysics class
//
#ifndef ExExChHadronElasticPhysics_h
#define ExExChHadronElasticPhysics_h 1
#include "globals.hh"
#include "G4VPhysicsConstructor.hh"
#include "G4HadronElastic.hh"
#include "G4HadronicProcess.hh"
class ExExChHadronElasticPhysics : public G4VPhysicsConstructor
{
public:
ExExChHadronElasticPhysics(G4int ver = 0);
virtual ~ExExChHadronElasticPhysics();
// This method will be invoked in the Construct() method.
// each particle type will be instantiated
virtual void ConstructParticle();
// This method will be invoked in the Construct() method.
// each physics process will be instantiated and
// registered to the process manager of each particle type
virtual void ConstructProcess();
inline G4HadronElastic* GetNeutronModel();
inline G4HadronicProcess* GetNeutronProcess();
private:
// copy constructor and hide assignment operator
ExExChHadronElasticPhysics(ExExChHadronElasticPhysics &);
ExExChHadronElasticPhysics & operator=(
const ExExChHadronElasticPhysics &right);
G4int verbose;
static G4ThreadLocal G4bool wasActivated;
static G4ThreadLocal G4HadronElastic* neutronModel;
static G4ThreadLocal G4HadronicProcess* neutronProcess;
};
inline G4HadronElastic* ExExChHadronElasticPhysics::GetNeutronModel()
{
return neutronModel;
}
inline G4HadronicProcess* ExExChHadronElasticPhysics::GetNeutronProcess()
{
return neutronProcess;
}
#endif