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9.6.p02
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geant4_9_6_p02
source
processes
electromagnetic
adjoint
include
G4AdjointhIonisationModel.hh
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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// $Id: G4AdjointhIonisationModel.hh 69844 2013-05-16 09:19:33Z gcosmo $
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//
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// Module: G4AdjointhIonisationModel
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// Author: L. Desorgher
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// Organisation: SpaceIT GmbH
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// Contract: ESA contract 21435/08/NL/AT
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// Customer: ESA/ESTEC
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//
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// CHANGE HISTORY
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// --------------
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// ChangeHistory:
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// 13th February 2009 creation by L. Desorgher
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// 10 November 2009 Implementation of the rapid sampling.
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//
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//-------------------------------------------------------------
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// Documentation:
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// Adjoint EM model for discrete reverse hadron ionisation. Tested at the moment only for protons.
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//
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#ifndef G4AdjointhIonisationModel_h
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#define G4AdjointhIonisationModel_h 1
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#include "
globals.hh
"
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#include "
G4DynamicParticle.hh
"
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#include "
G4ParticleDefinition.hh
"
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#include "
G4MaterialCutsCouple.hh
"
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#include "
G4Material.hh
"
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#include "
G4Element.hh
"
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#include "
G4ElementVector.hh
"
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#include "
Randomize.hh
"
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#include "
G4ParticleDefinition.hh
"
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#include "
G4VEmModel.hh
"
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#include "
G4Electron.hh
"
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#include "
G4Gamma.hh
"
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#include "
G4ProductionCutsTable.hh
"
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#include "
G4VEmAdjointModel.hh
"
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class
G4PhysicsTable
;
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class
G4Region
;
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class
G4VParticleChange
;
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class
G4ParticleChange
;
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class
G4Track
;
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class
G4AdjointCSMatrix
;
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class
G4AdjointhIonisationModel
:
public
G4VEmAdjointModel
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{
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public
:
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G4AdjointhIonisationModel
(
G4ParticleDefinition
* projectileDefinition);
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virtual
~G4AdjointhIonisationModel
();
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virtual
void
SampleSecondaries
(
const
G4Track
& aTrack,
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G4bool
IsScatProjToProjCase,
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G4ParticleChange
* fParticleChange);
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void
RapidSampleSecondaries
(
const
G4Track
& aTrack,
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G4bool
IsScatProjToProjCase,
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G4ParticleChange
* fParticleChange);
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virtual
G4double
DiffCrossSectionPerAtomPrimToSecond
(
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G4double
kinEnergyProj,
// kinetic energy of the primary particle before the interaction
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G4double
kinEnergyProd,
// kinetic energy of the secondary particle
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G4double
Z
,
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G4double
A = 0.);
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virtual
G4double
AdjointCrossSection
(
const
G4MaterialCutsCouple
* aCouple,
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G4double
primEnergy,
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G4bool
IsScatProjToProjCase);
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//Set/Get methods
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//------------------
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virtual
G4double
GetSecondAdjEnergyMaxForScatProjToProjCase
(
G4double
PrimAdjEnergy);
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virtual
G4double
GetSecondAdjEnergyMinForScatProjToProjCase
(
G4double
PrimAdjEnergy,
G4double
Tcut=0);
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virtual
G4double
GetSecondAdjEnergyMaxForProdToProjCase
(
G4double
PrimAdjEnergy);
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virtual
G4double
GetSecondAdjEnergyMinForProdToProjCase
(
G4double
PrimAdjEnergy);
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private
:
//Methods
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void
DefineProjectileProperty();
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//projectile property
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G4double
mass;
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G4double
tlimit;
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G4double
spin;
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G4double
magMoment2;
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G4double
chargeSquare;
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G4double
ratio, ratio2;
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G4double
one_plus_ratio_2;
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G4double
formfact;
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G4bool
isIon;
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G4double
one_minus_ratio_2;
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G4VEmModel
* theBraggDirectEMModel;
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//G4double term_Cross1, term_Cross2;
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};
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#endif
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