source: trunk/source/processes/electromagnetic/standard/src/G4hIonisation.cc@ 1344

Last change on this file since 1344 was 1340, checked in by garnier, 15 years ago

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[819]1//
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14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
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19// * technical work of the GEANT4 collaboration. *
20// * By using, copying, modifying or distributing the software (or *
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24// ********************************************************************
25//
[1340]26// $Id: G4hIonisation.cc,v 1.86 2010/10/26 10:42:04 vnivanch Exp $
27// GEANT4 tag $Name: emstand-V09-03-24 $
[819]28//
29// -------------------------------------------------------------------
30//
31// GEANT4 Class file
32//
33//
34// File name: G4hIonisation
35//
36// Author: Laszlo Urban
37//
38// Creation date: 30.05.1997
39//
40// Modifications:
41//
42// corrected by L.Urban on 24/09/97
43// several bugs corrected by L.Urban on 13/01/98
44// 07-04-98 remove 'tracking cut' of the ionizing particle, mma
45// 22-10-98 cleanup L.Urban
46// 02-02-99 bugs fixed , L.Urban
47// 29-07-99 correction in BuildLossTable for low energy, L.Urban
48// 10-02-00 modifications , new e.m. structure, L.Urban
49// 10-08-00 V.Ivanchenko change BuildLambdaTable, in order to
50// simulate energy losses of ions; correction to
51// cross section for particles with spin 1 is inserted as well
52// 28-05-01 V.Ivanchenko minor changes to provide ANSI -wall compilation
53// 10-08-01 new methods Store/Retrieve PhysicsTable (mma)
54// 14-08-01 new function ComputeRestrictedMeandEdx() + 'cleanup' (mma)
55// 29-08-01 PostStepDoIt: correction for spin 1/2 (instead of 1) (mma)
56// 17-09-01 migration of Materials to pure STL (mma)
57// 25-09-01 completion of RetrievePhysicsTable() (mma)
58// 29-10-01 all static functions no more inlined
59// 08-11-01 Charge renamed zparticle; added to the dedx
60// 27-03-02 Bug fix in scaling of lambda table (V.Ivanchenko)
61// 09-04-02 Update calculation of tables for GenericIons (V.Ivanchenko)
62// 30-04-02 V.Ivanchenko update to new design
63// 04-12-02 Add verbose level definition (VI)
64// 23-12-02 Change interface in order to move to cut per region (V.Ivanchenko)
65// 26-12-02 Secondary production moved to derived classes (V.Ivanchenko)
66// 13-02-03 SubCutoff regime is assigned to a region (V.Ivanchenko)
67// 23-05-03 Define default integral + BohrFluctuations (V.Ivanchenko)
68// 03-06-03 Fix initialisation problem for STD ionisation (V.Ivanchenko)
69// 04-08-03 Set integral=false to be default (V.Ivanchenko)
70// 08-08-03 STD substitute standard (V.Ivanchenko)
71// 12-11-03 G4EnergyLossSTD -> G4EnergyLossProcess (V.Ivanchenko)
72// 27-05-04 Set integral to be a default regime (V.Ivanchenko)
73// 08-11-04 Migration to new interface of Store/Retrieve tables (V.Ivantchenko)
74// 24-03-05 Optimize internal interfaces (V.Ivantchenko)
75// 12-08-05 SetStepLimits(0.2, 0.1*mm) (mma)
76// 10-01-06 SetStepLimits -> SetStepFunction (V.Ivanchenko)
77// 26-05-06 scale negative particles from pi- and pbar,
78// positive from pi+ and p (VI)
79// 14-01-07 use SetEmModel() and SetFluctModel() from G4VEnergyLossProcess (mma)
[961]80// 12-09-08 Removed CorrectionsAlongStep (VI)
[1315]81// 27-05-10 Added G4ICRU73QOModel for anti-protons (VI)
[819]82//
83// -------------------------------------------------------------------
84//
85//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
86//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
87
88#include "G4hIonisation.hh"
89#include "G4Electron.hh"
90#include "G4Proton.hh"
91#include "G4AntiProton.hh"
92#include "G4BraggModel.hh"
93#include "G4BetheBlochModel.hh"
[961]94#include "G4IonFluctuations.hh"
[819]95#include "G4UniversalFluctuation.hh"
96#include "G4BohrFluctuations.hh"
97#include "G4UnitsTable.hh"
98#include "G4PionPlus.hh"
99#include "G4PionMinus.hh"
[961]100#include "G4KaonPlus.hh"
101#include "G4KaonMinus.hh"
[1315]102#include "G4ICRU73QOModel.hh"
[819]103
104//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
105
106using namespace std;
107
108G4hIonisation::G4hIonisation(const G4String& name)
109 : G4VEnergyLossProcess(name),
[1315]110 isInitialised(false)
[819]111{
[1315]112 //SetStepFunction(0.2, 1.0*mm);
[961]113 //SetIntegral(true);
114 //SetVerboseLevel(1);
115 SetProcessSubType(fIonisation);
[819]116 mass = 0.0;
117 ratio = 0.0;
[1340]118 eth = 2*MeV;
[819]119}
120
121//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
122
123G4hIonisation::~G4hIonisation()
124{}
125
[1055]126//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
127
128G4bool G4hIonisation::IsApplicable(const G4ParticleDefinition& p)
129{
130 return (p.GetPDGCharge() != 0.0 && p.GetPDGMass() > 10.0*MeV &&
131 !p.IsShortLived());
132}
133
134//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
135
136G4double G4hIonisation::MinPrimaryEnergy(const G4ParticleDefinition*,
137 const G4Material*,
138 G4double cut)
139{
140 G4double x = 0.5*cut/electron_mass_c2;
141 G4double g = x*ratio + std::sqrt((1. + x)*(1. + x*ratio*ratio));
142 return mass*(g - 1.0);
143}
144
[819]145//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
146
147void G4hIonisation::InitialiseEnergyLossProcess(
148 const G4ParticleDefinition* part,
149 const G4ParticleDefinition* bpart)
150{
[961]151 if(!isInitialised) {
[819]152
[961]153 const G4ParticleDefinition* theBaseParticle = 0;
154 G4String pname = part->GetParticleName();
[1315]155 G4double q = part->GetPDGCharge();
[819]156
[961]157 // standard base particles
158 if(part == bpart || pname == "proton" ||
159 pname == "anti_proton" ||
160 pname == "pi+" || pname == "pi-" ||
161 pname == "kaon+" || pname == "kaon-")
162 {
163 theBaseParticle = 0;
164 }
165 // select base particle
166 else if(bpart == 0) {
[819]167
[1315]168 if(part->GetPDGSpin() == 0.0) {
169 if(q > 0.0) { theBaseParticle = G4KaonPlus::KaonPlus(); }
170 else { theBaseParticle = G4KaonMinus::KaonMinus(); }
[961]171 } else {
[1315]172 if(q > 0.0) { theBaseParticle = G4Proton::Proton(); }
173 else { theBaseParticle = G4AntiProton::AntiProton(); }
[961]174 }
[1315]175
[961]176 // base particle defined by interface
177 } else {
178 theBaseParticle = bpart;
179 }
180 SetBaseParticle(theBaseParticle);
181 SetSecondaryParticle(G4Electron::Electron());
[819]182
[961]183 mass = part->GetPDGMass();
184 ratio = electron_mass_c2/mass;
[1315]185 eth = 2.0*MeV*mass/proton_mass_c2;
[819]186
[1315]187 if (!EmModel(1)) {
188 if(q > 0.0) { SetEmModel(new G4BraggModel(),1); }
189 else { SetEmModel(new G4ICRU73QOModel(),1); }
190 }
[961]191 EmModel(1)->SetLowEnergyLimit(MinKinEnergy());
[819]192
[961]193 // model limit defined for protons
[1315]194 //eth = (EmModel(1)->HighEnergyLimit())*mass/proton_mass_c2;
[961]195 EmModel(1)->SetHighEnergyLimit(eth);
196 AddEmModel(1, EmModel(1), new G4IonFluctuations());
[819]197
[1315]198 if (!FluctModel()) { SetFluctModel(new G4UniversalFluctuation()); }
[819]199
[1315]200 if (!EmModel(2)) { SetEmModel(new G4BetheBlochModel(),2); }
[961]201 EmModel(2)->SetLowEnergyLimit(eth);
202 EmModel(2)->SetHighEnergyLimit(MaxKinEnergy());
203 AddEmModel(2, EmModel(2), FluctModel());
[819]204
[961]205 isInitialised = true;
206 }
[819]207}
208
209//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
210
211void G4hIonisation::PrintInfo()
[1315]212{}
[819]213
214//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
[1315]215
216void G4hIonisation::ActivateNuclearStopping(G4bool)
217{}
218
219//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
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