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geant4/source/processes/hadronic/models/low_energy/include/G4InelasticInteraction.hh
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//
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// $Id$
//
// Hadronic Process: Inelastic Interaction
// This class is an abstract base class, since the pure virtual
// function ApplyYourself has not been defined yet.
// original by H.P. Wellisch
// Modified by J.L. Chuma, TRIUMF, 22-Nov-1996
// Modified by J.L. Chuma 27-Mar-1997
// Modified by J.L. Chuma 30-Apr-1997
// Modified by J.L. Chuma 05-Aug-1997 to pass the original incident particle to
// CalculateMomenta
// Modified by J.L. Chuma 05-Jun-1998 to include quasiElastic flag to allow for
// TwoBody to be called directly, bypassing
// TwoCluster, and allowing TwoCluster to be
// called with no secondaries
// 23-Jan-2009 V.Ivanchenko move constructor and destructor to the body
// 29-Aug-2009 V.Ivanchenko moveded G4ReactionDynamics instance from the based class
#ifndef G4InelasticInteraction_h
#define G4InelasticInteraction_h 1
#include "globals.hh"
#include "G4FastVector.hh"
#include "G4HadronicInteraction.hh"
#include "G4ReactionProduct.hh"
#include "G4ParticleTypes.hh"
#include "Randomize.hh"
#include "G4ReactionDynamics.hh"
#include "G4VIsotopeProduction.hh"
class G4IsoResult;
class G4IsoParticleChange;
class G4InelasticInteraction : public G4HadronicInteraction
{
public:
G4InelasticInteraction(const G4String& name = "LEInelastic");
virtual ~G4InelasticInteraction();
void RegisterIsotopeProductionModel(G4VIsotopeProduction* aModel)
{theProductionModels.push_back(aModel);}
void TurnOnIsotopeProduction() {isotopeProduction = true;}
static G4IsoParticleChange* GetIsotopeProductionInfo();
virtual const std::pair<G4double, G4double> GetFatalEnergyCheckLevels() const;
protected:
G4double Pmltpc(G4int np, G4int nm, G4int nz, G4int n,
G4double b, G4double c );
G4bool MarkLeadingStrangeParticle(const G4ReactionProduct &currentParticle,
const G4ReactionProduct &targetParticle,
G4ReactionProduct &leadParticle);
void SetUpPions(const G4int np, const G4int nm, const G4int nz,
G4FastVector<G4ReactionProduct,GHADLISTSIZE>& vec,
G4int& vecLen);
void Rotate(G4FastVector<G4ReactionProduct,GHADLISTSIZE>& vec, G4int& vecLen);
void GetNormalizationConstant(const G4double availableEnergy,
G4double& n, G4double& anpn);
void CalculateMomenta(G4FastVector<G4ReactionProduct,GHADLISTSIZE>& vec,
G4int& vecLen,
const G4HadProjectile* originalIncident,
const G4DynamicParticle* originalTarget,
G4ReactionProduct& modifiedOriginal,
G4Nucleus& targetNucleus,
G4ReactionProduct& currentParticle,
G4ReactionProduct& targetParticle,
G4bool& incidentHasChanged,
G4bool& targetHasChanged,
G4bool quasiElastic);
void SetUpChange(G4FastVector<G4ReactionProduct,GHADLISTSIZE>& vec,
G4int& vecLen,
G4ReactionProduct& currentParticle,
G4ReactionProduct& targetParticle,
G4bool& incidentHasChanged);
void DoIsotopeCounting(const G4HadProjectile* theProjectile,
const G4Nucleus& aNucleus);
G4IsoResult* ExtractResidualNucleus(const G4Nucleus& aNucleus);
G4bool isotopeProduction;
G4ReactionDynamics theReactionDynamics;
private:
G4double cache;
G4ThreeVector what;
std::vector<G4VIsotopeProduction*> theProductionModels;
static G4IsoParticleChange* theIsoResult;
static G4IsoParticleChange* theOldIsoResult;
};
#endif