Import Geant4 6.0.0 source tree

This commit is contained in:
Gabriele Cosmo
2016-06-09 10:41:53 +02:00
parent 4aea781e80
commit 96686e0c8f
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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. *
// ********************************************************************
//
//
// -------------------------------------------------------------------
// GEANT 4 class implementation file
//
// CERN, Geneva, Switzerland
//
// File name: G4SigmaZeroField.cc
//
// Author: Alessandro Brunengo (Alessandro.Brunengo@ge.infn.it)
//
// Creation date: 5 June 2000
// -------------------------------------------------------------------
#include "G4SigmaZeroField.hh"
#include "G4NucleiPropertiesTable.hh"
#include "G4VNuclearDensity.hh"
#include "G4FermiMomentum.hh"
#include "G4SigmaZero.hh"
#include "G4HadTmpUtil.hh"
G4SigmaZeroField::G4SigmaZeroField(G4V3DNucleus * nucleus, G4double coeff)
: G4VNuclearField(nucleus)
{
theCoeff = coeff;
}
G4SigmaZeroField::~G4SigmaZeroField()
{ }
const G4SigmaZeroField & G4SigmaZeroField::operator=(const G4SigmaZeroField &)
{
throw G4HadronicException(__FILE__, __LINE__, "G4SigmaZeroField::operator= meant not to be accessible");
return *this;
}
G4int G4SigmaZeroField::operator==(const G4SigmaZeroField &) const
{
throw G4HadronicException(__FILE__, __LINE__, "G4SigmaZeroField::operator== meant not to be accessible");
return 0;
}
G4int G4SigmaZeroField::operator!=(const G4SigmaZeroField &) const
{
throw G4HadronicException(__FILE__, __LINE__, "G4SigmaZeroField::operator!= meant not to be accessible");
return 1;
}
G4double G4SigmaZeroField::GetField(const G4ThreeVector & aPosition)
{
// Field is 0 out of the nucleus!
if(aPosition.mag() >= radius) return 0.0;
G4double sigmaZeroMass = G4SigmaZero::SigmaZero()->GetPDGMass();
G4double A = theNucleus->GetMassNumber();
G4double Z = theNucleus->GetCharge();
G4double bindingEnergy = G4NucleiPropertiesTable::GetBindingEnergy(G4lrint(Z), G4lrint(A));
G4double nucleusMass = Z*proton_mass_c2+(A-Z)*neutron_mass_c2+bindingEnergy;
G4double reducedMass = sigmaZeroMass*nucleusMass/(sigmaZeroMass+nucleusMass);
const G4VNuclearDensity * nuclearDensity=theNucleus->GetNuclearDensity();
G4double density = nuclearDensity->GetDensity(aPosition);
return -2.*pi*hbarc*hbarc/reducedMass*(2.0)*theCoeff*density;
}
G4double G4SigmaZeroField::GetBarrier()
{
return 0.;
}