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geant4/source/processes/hadronic/models/util/include/G4Fancy3DNucleus.hh
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2016-06-09 10:41:53 +02:00

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//
// ********************************************************************
// * DISCLAIMER *
// * *
// * The following disclaimer summarizes all the specific disclaimers *
// * of contributors to this software. The specific disclaimers,which *
// * govern, are listed with their locations in: *
// * http://cern.ch/geant4/license *
// * *
// * Neither the authors of this software system, nor their employing *
// * institutes,nor the agencies providing financial support for this *
// * work make any representation or warranty, express or implied, *
// * regarding this software system or assume any liability for its *
// * use. *
// * *
// * This code implementation is the intellectual property of the *
// * GEANT4 collaboration. *
// * By copying, distributing or modifying the Program (or any work *
// * based on the Program) you indicate your acceptance of this *
// * statement, and all its terms. *
// ********************************************************************
//
//
//
#ifndef G4Fancy3DNucleus_h
#define G4Fancy3DNucleus_h 1
// ------------------------------------------------------------
// GEANT 4 class header file
//
// ---------------- G4Fancy3DNucleus ----------------
// by Gunter Folger, May 1998.
// class for a 3D nucleus, arranging nucleons in space and momentum.
// ------------------------------------------------------------
#include "globals.hh"
#include "G4DynamicParticle.hh"
#include "G4V3DNucleus.hh"
#include "G4Nucleon.hh"
#include "G4VNuclearDensity.hh"
#include "G4FermiMomentum.hh"
#include <vector>
class G4Fancy3DNucleus : public G4V3DNucleus
{
public:
G4Fancy3DNucleus();
~G4Fancy3DNucleus();
private:
G4Fancy3DNucleus(const G4Fancy3DNucleus &right);
const G4Fancy3DNucleus & operator=(const G4Fancy3DNucleus &right);
int operator==(const G4Fancy3DNucleus &right) const;
int operator!=(const G4Fancy3DNucleus &right) const;
// Implementation
void ChooseNucleons();
void ChoosePositions();
void ChooseFermiMomenta();
G4double BindingEnergy();
G4bool ReduceSum(G4ThreeVector * momentum, G4double *);
public:
void Init(G4double theA, G4double theZ);
G4bool StartLoop();
G4Nucleon * GetNextNucleon();
const std::vector<G4Nucleon *> & GetNucleons();
G4int GetMassNumber();
G4double GetMass();
G4int GetCharge();
G4double GetNuclearRadius();
G4double GetNuclearRadius(const G4double maxRelativeDensity);
G4double GetOuterRadius();
G4double CoulombBarrier();
void DoLorentzBoost(const G4LorentzVector & theBoost);
void DoLorentzBoost(const G4ThreeVector & theBeta);
void DoLorentzContraction(const G4LorentzVector & theBoost);
void DoLorentzContraction(const G4ThreeVector & theBeta);
void CenterNucleons();
void DoTranslation(const G4ThreeVector & theShift);
const G4VNuclearDensity * GetNuclearDensity() const;
private:
G4int myA;
G4int myZ;
G4Nucleon * theNucleons;
std::vector<G4Nucleon *> theRWNucleons; // should not have two...
struct DeleteNucleon{ void operator()(G4Nucleon *aN){delete aN;} };
G4int currentNucleon;
G4VNuclearDensity * theDensity;
G4FermiMomentum theFermi;
const G4double nucleondistance;
};
inline G4int G4Fancy3DNucleus::GetCharge()
{
return myZ;
}
inline G4int G4Fancy3DNucleus::GetMassNumber()
{
return myA;
}
#endif