Geant4  10.00.p02
G4INCL::NuclearPotential::NuclearPotentialEnergyIsospin Class Reference

#include <G4INCLNuclearPotentialEnergyIsospin.hh>

+ Inheritance diagram for G4INCL::NuclearPotential::NuclearPotentialEnergyIsospin:
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Public Member Functions

 NuclearPotentialEnergyIsospin (const G4int A, const G4int Z, const G4bool pionPotential)
 
virtual ~NuclearPotentialEnergyIsospin ()
 
virtual G4double computePotentialEnergy (const Particle *const p) const
 
- Public Member Functions inherited from G4INCL::NuclearPotential::NuclearPotentialIsospin
 NuclearPotentialIsospin (const G4int A, const G4int Z, const G4bool pionPotential)
 
virtual ~NuclearPotentialIsospin ()
 
- Public Member Functions inherited from G4INCL::NuclearPotential::INuclearPotential
 INuclearPotential (const G4int A, const G4int Z, const G4bool pionPot)
 
virtual ~INuclearPotential ()
 
G4bool hasPionPotential () const
 Do we have a pion potential? More...
 
G4double getFermiEnergy (const Particle *const p) const
 Return the Fermi energy for a particle. More...
 
G4double getFermiEnergy (const ParticleType t) const
 Return the Fermi energy for a particle type. More...
 
G4double getSeparationEnergy (const Particle *const p) const
 Return the separation energy for a particle. More...
 
G4double getSeparationEnergy (const ParticleType t) const
 Return the separation energy for a particle type. More...
 
G4double getFermiMomentum (const Particle *const p) const
 Return the Fermi momentum for a particle. More...
 
G4double getFermiMomentum (const ParticleType t) const
 Return the Fermi momentum for a particle type. More...
 

Static Private Attributes

static const G4double alpha = 0.223
 Slope of the V(T) curve. More...
 

Additional Inherited Members

- Protected Member Functions inherited from G4INCL::NuclearPotential::INuclearPotential
G4double computePionPotentialEnergy (const Particle *const p) const
 Compute the potential energy for the given pion. More...
 
- Protected Attributes inherited from G4INCL::NuclearPotential::INuclearPotential
const G4int theA
 The mass number of the nucleus. More...
 
const G4int theZ
 The charge number of the nucleus. More...
 
std::map< ParticleType, G4doublefermiEnergy
 
std::map< ParticleType, G4doublefermiMomentum
 
std::map< ParticleType, G4doubleseparationEnergy
 

Detailed Description

Definition at line 55 of file G4INCLNuclearPotentialEnergyIsospin.hh.

Constructor & Destructor Documentation

G4INCL::NuclearPotential::NuclearPotentialEnergyIsospin::NuclearPotentialEnergyIsospin ( const G4int  A,
const G4int  Z,
const G4bool  pionPotential 
)

Definition at line 57 of file G4INCLNuclearPotentialEnergyIsospin.cc.

G4INCL::NuclearPotential::NuclearPotentialEnergyIsospin::~NuclearPotentialEnergyIsospin ( )
virtual

Definition at line 62 of file G4INCLNuclearPotentialEnergyIsospin.cc.

Member Function Documentation

G4double G4INCL::NuclearPotential::NuclearPotentialEnergyIsospin::computePotentialEnergy ( const Particle *const  p) const
virtual

Reimplemented from G4INCL::NuclearPotential::NuclearPotentialIsospin.

Definition at line 64 of file G4INCLNuclearPotentialEnergyIsospin.cc.

References alpha, G4INCL::NuclearPotential::NuclearPotentialIsospin::computePotentialEnergy(), G4INCL::NuclearPotential::INuclearPotential::getFermiEnergy(), G4INCL::Particle::getKineticEnergy(), and G4INCL::Particle::isNucleon().

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Member Data Documentation

const G4double G4INCL::NuclearPotential::NuclearPotentialEnergyIsospin::alpha = 0.223
staticprivate

Slope of the V(T) curve.

Definition at line 65 of file G4INCLNuclearPotentialEnergyIsospin.hh.

Referenced by computePotentialEnergy().


The documentation for this class was generated from the following files: