Geant4
9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4INCLCDPP.cc
Go to the documentation of this file.
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//
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// ********************************************************************
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// * License and Disclaimer *
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// * *
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// * The Geant4 software is copyright of the Copyright Holders of *
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// * the Geant4 Collaboration. It is provided under the terms and *
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// * conditions of the Geant4 Software License, included in the file *
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// * LICENSE and available at http://cern.ch/geant4/license . These *
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// * include a list of copyright holders. *
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// * *
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// * Neither the authors of this software system, nor their employing *
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// * institutes,nor the agencies providing financial support for this *
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// * work make any representation or warranty, express or implied, *
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// * regarding this software system or assume any liability for its *
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// * use. Please see the license in the file LICENSE and URL above *
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// * for the full disclaimer and the limitation of liability. *
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// * *
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// * This code implementation is the result of the scientific and *
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// * technical work of the GEANT4 collaboration. *
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// * By using, copying, modifying or distributing the software (or *
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// * any work based on the software) you agree to acknowledge its *
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// * use in resulting scientific publications, and indicate your *
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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// INCL++ intra-nuclear cascade model
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// Pekka Kaitaniemi, CEA and Helsinki Institute of Physics
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// Davide Mancusi, CEA
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// Alain Boudard, CEA
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// Sylvie Leray, CEA
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// Joseph Cugnon, University of Liege
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//
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// INCL++ revision: v5.1.8
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//
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#define INCLXX_IN_GEANT4_MODE 1
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#include "
globals.hh
"
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#include "
G4INCLCDPP.hh
"
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namespace
G4INCL
{
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CDPP::CDPP
() {}
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CDPP::~CDPP
() {}
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G4bool
CDPP::isBlocked
(
ParticleList
const
created,
Nucleus
const
*
const
nucleus)
const
{
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G4double
S = nucleus->
computeSeparationEnergyBalance
();
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const
G4double
Sp = nucleus->
getPotential
()->
getSeparationEnergy
(
Proton
);
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const
G4double
Sn = nucleus->
getPotential
()->
getSeparationEnergy
(
Neutron
);
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ParticleList
remnantParticles = nucleus->
getStore
()->
getParticles
();
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remnantParticles.insert(remnantParticles.end(), created.begin(), created.end());
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G4double
Sk = 0.0;
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G4double
TbelowTf = 0.0;
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for
(
ParticleIter
i = remnantParticles.begin(); i != remnantParticles.end();
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++i) {
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if
((*i)->isNucleon()) {
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const
G4double
Tf = nucleus->
getPotential
()->
getFermiEnergy
(*i);
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const
G4double
T = (*i)->getKineticEnergy();
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if
(T > Tf) {
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const
G4double
sep = nucleus->
getPotential
()->
getSeparationEnergy
(*i);
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Sk += sep;
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}
else
{
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TbelowTf += T - (*i)->getPotentialEnergy();
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}
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}
else
if
((*i)->isResonance()) {
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const
G4double
Tf = nucleus->
getPotential
()->
getFermiEnergy
(*i);
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const
G4double
T = (*i)->getKineticEnergy();
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if
(T > Tf) {
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const
G4double
sep = nucleus->
getPotential
()->
getSeparationEnergy
(*i);
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Sk += sep;
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}
else
{
// Ugly! We should use total energies everywhere!
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TbelowTf += (*i)->getEnergy() -
ParticleTable::getINCLMass
(
Proton
) - (*i)->getPotentialEnergy();
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}
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}
else
if
((*i)->getType() ==
PiPlus
)
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Sk += Sp - Sn;
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else
if
((*i)->getType() ==
PiMinus
)
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Sk += Sn - Sp;
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}
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G4double
Tinitial = nucleus->
getInitialInternalEnergy
();
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G4double
Eblock = TbelowTf - Tinitial - Sk - S;
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return
(Eblock < 0.0);
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}
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}
G4INCLCDPP.hh
G4double
double G4double
Definition:
G4Types.hh:64
G4bool
bool G4bool
Definition:
G4Types.hh:67
G4INCL::CDPP::CDPP
CDPP()
Definition:
G4INCLCDPP.cc:43
G4INCL::CDPP::isBlocked
G4bool isBlocked(ParticleList const, Nucleus const *const) const
Definition:
G4INCLCDPP.cc:47
G4INCL::CDPP::~CDPP
~CDPP()
Definition:
G4INCLCDPP.cc:45
G4INCL::NuclearPotential::INuclearPotential::getSeparationEnergy
G4double getSeparationEnergy(const Particle *const p) const
Return the separation energy for a particle.
Definition:
G4INCLINuclearPotential.hh:121
G4INCL::NuclearPotential::INuclearPotential::getFermiEnergy
G4double getFermiEnergy(const Particle *const p) const
Return the Fermi energy for a particle.
Definition:
G4INCLINuclearPotential.hh:99
G4INCL::Nucleus
Definition:
G4INCLNucleus.hh:66
G4INCL::Nucleus::getPotential
NuclearPotential::INuclearPotential * getPotential() const
Getter for thePotential.
Definition:
G4INCLNucleus.hh:433
G4INCL::Nucleus::computeSeparationEnergyBalance
G4double computeSeparationEnergyBalance() const
Outgoing - incoming separation energies.
Definition:
G4INCLNucleus.hh:124
G4INCL::Nucleus::getStore
Store * getStore() const
Definition:
G4INCLNucleus.hh:253
G4INCL::Nucleus::getInitialInternalEnergy
G4double getInitialInternalEnergy() const
Definition:
G4INCLNucleus.hh:259
G4INCL::ParticleTable::getINCLMass
static G4double getINCLMass(const G4int A, const G4int Z)
Get INCL nuclear mass (in MeV/c^2)
Definition:
G4INCLParticleTable.cc:518
G4INCL::Store::getParticles
ParticleList const & getParticles() const
Definition:
G4INCLStore.hh:237
globals.hh
G4INCL
Definition:
G4INCLAvatarAction.hh:46
G4INCL::PiMinus
@ PiMinus
Definition:
G4INCLParticleType.hh:55
G4INCL::Proton
@ Proton
Definition:
G4INCLParticleType.hh:52
G4INCL::PiPlus
@ PiPlus
Definition:
G4INCLParticleType.hh:54
G4INCL::Neutron
@ Neutron
Definition:
G4INCLParticleType.hh:53
G4INCL::ParticleList
std::list< G4INCL::Particle * > ParticleList
Definition:
G4INCLParticle.hh:63
G4INCL::ParticleIter
std::list< G4INCL::Particle * >::const_iterator ParticleIter
Definition:
G4INCLParticle.hh:64
geant4-v9.6.0
source
processes
hadronic
models
inclxx
incl_physics
src
G4INCLCDPP.cc
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