Geant4
11.2.2
Toolkit for the simulation of the passage of particles through matter
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G4NeutronElectronElModel.hh
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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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//
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//
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// Geant4 Header : G4NeutronElectronElModel
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//
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// 16.5.17 V.Grichine
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//
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// Modified:
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//
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// Class Description
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// Default model for neutron-electron elastic scattering;
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// Class Description - End
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#ifndef G4NeutronElectronElModel_h
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#define G4NeutronElectronElModel_h 1
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#include "
globals.hh
"
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#include "
G4HadronElastic.hh
"
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#include "
G4HadProjectile.hh
"
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#include "
G4Nucleus.hh
"
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#include "
G4NucleiProperties.hh
"
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class
G4ParticleDefinition
;
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class
G4PhysicsLogVector
;
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class
G4PhysicsTable
;
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class
G4NeutronElectronElModel
:
public
G4HadronElastic
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{
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public
:
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G4NeutronElectronElModel
(
const
G4String
& name =
"n-e-elastic"
);
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virtual
~G4NeutronElectronElModel
();
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virtual
G4bool
IsApplicable
(
const
G4HadProjectile
& aTrack,
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G4Nucleus
& targetNucleus);
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virtual
G4HadFinalState
*
ApplyYourself
(
const
G4HadProjectile
& aTrack,
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G4Nucleus
& targetNucleus);
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void
Initialise
();
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G4double
XscIntegrand
(
G4double
x);
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G4double
CalculateAm
(
G4double
momentum);
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inline
G4double
GetAm
(){
return
fAm;};
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// sample recoil electron energy in lab frame
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G4double
SampleSin2HalfTheta
(
G4double
Tkin);
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G4double
GetTransfer
(
G4int
iTkin,
G4int
iTransfer,
G4double
position
);
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void
SetCutEnergy
(
G4double
ec){fCutEnergy=ec;};
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G4double
GetCutEnergy
(){
return
fCutEnergy;};
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virtual
void
ModelDescription
(std::ostream&)
const
;
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private
:
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G4double
fAm, fM, fM2, fMv2, fme, fme2, fee, fee2;
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G4double
fMinEnergy, fMaxEnergy;
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G4int
fEnergyBin, fAngleBin;
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G4ParticleDefinition
* theElectron;
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G4double
fCutEnergy;
// minimal recoil electron energy detected
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G4PhysicsLogVector
* fEnergyVector;
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G4PhysicsTable
* fAngleTable;
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};
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////////////////////////////////////////////////////////////////////
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//
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// return Wentzel atom screening correction for neutron-electron scattering
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inline
G4double
G4NeutronElectronElModel::CalculateAm
(
G4double
Tkin)
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{
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fee = (Tkin+fM)*fme/fM;
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// G4cout<<"fee = "<<fee<<" MeV"<<G4endl;
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fee2 = fee*fee;
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G4double
momentum = std::sqrt( fee2 - fme2 );
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G4double
k = momentum/CLHEP::hbarc;
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G4double
ch = 1.13;
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G4double
zn = 1.77*k*CLHEP::Bohr_radius;
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G4double
zn2 = zn*zn;
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fAm = ch/zn2;
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return
fAm;
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}
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#endif
G4HadProjectile.hh
G4HadronElastic.hh
G4NucleiProperties.hh
G4Nucleus.hh
G4double
double G4double
Definition
G4Types.hh:83
G4bool
bool G4bool
Definition
G4Types.hh:86
G4int
int G4int
Definition
G4Types.hh:85
G4HadFinalState
Definition
G4HadFinalState.hh:46
G4HadProjectile
Definition
G4HadProjectile.hh:40
G4HadronElastic
Definition
G4HadronElastic.hh:49
G4NeutronElectronElModel
Definition
G4NeutronElectronElModel.hh:52
G4NeutronElectronElModel::ModelDescription
virtual void ModelDescription(std::ostream &) const
Definition
G4NeutronElectronElModel.cc:101
G4NeutronElectronElModel::SampleSin2HalfTheta
G4double SampleSin2HalfTheta(G4double Tkin)
Definition
G4NeutronElectronElModel.cc:159
G4NeutronElectronElModel::CalculateAm
G4double CalculateAm(G4double momentum)
Definition
G4NeutronElectronElModel.hh:101
G4NeutronElectronElModel::ApplyYourself
virtual G4HadFinalState * ApplyYourself(const G4HadProjectile &aTrack, G4Nucleus &targetNucleus)
Definition
G4NeutronElectronElModel.cc:262
G4NeutronElectronElModel::GetCutEnergy
G4double GetCutEnergy()
Definition
G4NeutronElectronElModel.hh:80
G4NeutronElectronElModel::G4NeutronElectronElModel
G4NeutronElectronElModel(const G4String &name="n-e-elastic")
Definition
G4NeutronElectronElModel.cc:49
G4NeutronElectronElModel::GetAm
G4double GetAm()
Definition
G4NeutronElectronElModel.hh:71
G4NeutronElectronElModel::~G4NeutronElectronElModel
virtual ~G4NeutronElectronElModel()
Definition
G4NeutronElectronElModel.cc:84
G4NeutronElectronElModel::XscIntegrand
G4double XscIntegrand(G4double x)
Definition
G4NeutronElectronElModel.cc:239
G4NeutronElectronElModel::Initialise
void Initialise()
Definition
G4NeutronElectronElModel.cc:120
G4NeutronElectronElModel::IsApplicable
virtual G4bool IsApplicable(const G4HadProjectile &aTrack, G4Nucleus &targetNucleus)
Definition
G4NeutronElectronElModel.cc:110
G4NeutronElectronElModel::GetTransfer
G4double GetTransfer(G4int iTkin, G4int iTransfer, G4double position)
Definition
G4NeutronElectronElModel.cc:194
G4NeutronElectronElModel::SetCutEnergy
void SetCutEnergy(G4double ec)
Definition
G4NeutronElectronElModel.hh:79
G4Nucleus
Definition
G4Nucleus.hh:52
G4ParticleDefinition
Definition
G4ParticleDefinition.hh:62
G4PhysicsLogVector
Definition
G4PhysicsLogVector.hh:48
G4PhysicsTable
Definition
G4PhysicsTable.hh:56
G4String
Definition
G4String.hh:62
globals.hh
position
Definition
xmltok.h:144
geant4-v11.2.2
source
processes
hadronic
models
coherent_elastic
include
G4NeutronElectronElModel.hh
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