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Public Member Functions
G4PionZeroField Class Reference

#include <G4PionZeroField.hh>

Inheritance diagram for G4PionZeroField:
G4VNuclearField

Public Member Functions

 G4PionZeroField (G4V3DNucleus *nucleus, G4double coeff=0.042 *CLHEP::fermi)
 
virtual ~G4PionZeroField ()
 
virtual G4double GetField (const G4ThreeVector &aPosition)
 
virtual G4double GetBarrier ()
 
virtual G4double GetCoeff ()
 
- Public Member Functions inherited from G4VNuclearField
 G4VNuclearField (G4V3DNucleus *aNucleus=0)
 
virtual ~G4VNuclearField ()
 
void SetNucleus (G4V3DNucleus *aNucleus)
 

Additional Inherited Members

- Protected Attributes inherited from G4VNuclearField
G4V3DNucleustheNucleus
 
const G4double radius
 

Detailed Description

Definition at line 47 of file G4PionZeroField.hh.

Constructor & Destructor Documentation

G4PionZeroField::G4PionZeroField ( G4V3DNucleus nucleus,
G4double  coeff = 0.042*CLHEP::fermi 
)

Definition at line 47 of file G4PionZeroField.cc.

48  : G4VNuclearField(nucleus)
49 {
50  theCoeff = coeff;
51 }
G4VNuclearField(G4V3DNucleus *aNucleus=0)
G4PionZeroField::~G4PionZeroField ( )
virtual

Definition at line 54 of file G4PionZeroField.cc.

55 { }

Member Function Documentation

G4double G4PionZeroField::GetBarrier ( )
virtual

Implements G4VNuclearField.

Definition at line 77 of file G4PionZeroField.cc.

78 {
79  return 0;
80 }
virtual G4double G4PionZeroField::GetCoeff ( )
inlinevirtual

Reimplemented from G4VNuclearField.

Definition at line 62 of file G4PionZeroField.hh.

62 { return theCoeff; }
G4double G4PionZeroField::GetField ( const G4ThreeVector aPosition)
virtual

Implements G4VNuclearField.

Definition at line 57 of file G4PionZeroField.cc.

References G4InuclSpecialFunctions::bindingEnergy(), density, G4NucleiProperties::GetBindingEnergy(), G4V3DNucleus::GetCharge(), G4VNuclearDensity::GetDensity(), G4V3DNucleus::GetMassNumber(), G4V3DNucleus::GetNuclearDensity(), G4ParticleDefinition::GetPDGMass(), python.hepunit::hbarc, CLHEP::Hep3Vector::mag(), python.hepunit::neutron_mass_c2, python.hepunit::pi, G4PionZero::PionZero(), python.hepunit::proton_mass_c2, G4VNuclearField::radius, and G4VNuclearField::theNucleus.

58 {
59 // Field is 0 out of the nucleus!
60  if(aPosition.mag() >= radius) return 0.0;
61 
62  G4double pionZeroMass = G4PionZero::PionZero()->GetPDGMass();
64  G4int Z = theNucleus->GetCharge();
65 
67  G4double nucleusMass = Z*proton_mass_c2+(A-Z)*neutron_mass_c2+bindingEnergy;
68  G4double reducedMass = pionZeroMass*nucleusMass/(pionZeroMass+nucleusMass);
69 
70 
72  G4double nucleonMass = (proton_mass_c2+neutron_mass_c2)/2;
73 
74  return 2.*pi*hbarc*hbarc/reducedMass*(1+pionZeroMass/nucleonMass)*theCoeff*density;
75 }
virtual G4int GetCharge()=0
virtual const G4VNuclearDensity * GetNuclearDensity() const =0
virtual G4int GetMassNumber()=0
int G4int
Definition: G4Types.hh:78
G4double density
Definition: TRTMaterials.hh:39
float proton_mass_c2
Definition: hepunit.py:275
static G4PionZero * PionZero()
Definition: G4PionZero.cc:104
float neutron_mass_c2
Definition: hepunit.py:276
const G4double radius
G4double GetPDGMass() const
G4double GetDensity(const G4ThreeVector &aPosition) const
static G4double GetBindingEnergy(const G4int A, const G4int Z)
G4V3DNucleus * theNucleus
double G4double
Definition: G4Types.hh:76
G4double bindingEnergy(G4int A, G4int Z)
double mag() const

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