| [819] | 1 | //
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| 2 | // ********************************************************************
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| 3 | // * License and Disclaimer *
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| 4 | // * *
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| 5 | // * The Geant4 software is copyright of the Copyright Holders of *
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| 6 | // * the Geant4 Collaboration. It is provided under the terms and *
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| 7 | // * conditions of the Geant4 Software License, included in the file *
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| 8 | // * LICENSE and available at http://cern.ch/geant4/license . These *
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| 9 | // * include a list of copyright holders. *
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| 10 | // * *
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| 11 | // * Neither the authors of this software system, nor their employing *
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| 12 | // * institutes,nor the agencies providing financial support for this *
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| 13 | // * work make any representation or warranty, express or implied, *
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| 14 | // * regarding this software system or assume any liability for its *
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| 15 | // * use. Please see the license in the file LICENSE and URL above *
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| 16 | // * for the full disclaimer and the limitation of liability. *
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| 17 | // * *
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| 18 | // * This code implementation is the result of the scientific and *
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| 19 | // * technical work of the GEANT4 collaboration. *
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| 20 | // * By using, copying, modifying or distributing the software (or *
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| 21 | // * any work based on the software) you agree to acknowledge its *
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| 22 | // * use in resulting scientific publications, and indicate your *
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| 23 | // * acceptance of all terms of the Geant4 Software license. *
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| 24 | // ********************************************************************
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| 25 | //
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| [1340] | 26 | // $Id: G4BGGNucleonElasticXS.cc,v 1.8 2010/10/12 06:02:41 dennis Exp $
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| 27 | // GEANT4 tag $Name: hadr-cross-V09-03-12 $
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| [819] | 28 | //
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| 29 | // -------------------------------------------------------------------
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| 30 | //
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| 31 | // GEANT4 Class file
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| 32 | //
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| 33 | //
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| 34 | // File name: G4BGGNucleonElasticXS
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| 35 | //
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| 36 | // Author: Vladimir Ivanchenko
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| 37 | //
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| 38 | // Creation date: 13.03.2007
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| 39 | // Modifications:
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| 40 | //
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| 41 | //
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| 42 | // -------------------------------------------------------------------
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| 43 | //
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| 44 |
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| 45 | #include "G4BGGNucleonElasticXS.hh"
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| 46 | #include "G4GlauberGribovCrossSection.hh"
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| 47 | #include "G4NucleonNuclearCrossSection.hh"
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| [962] | 48 | #include "G4HadronNucleonXsc.hh"
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| [819] | 49 | #include "G4Proton.hh"
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| 50 | #include "G4Neutron.hh"
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| 51 | #include "G4NistManager.hh"
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| 52 |
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| 53 |
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| [962] | 54 | G4BGGNucleonElasticXS::G4BGGNucleonElasticXS(const G4ParticleDefinition*)
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| [819] | 55 | {
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| 56 | verboseLevel = 0;
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| [962] | 57 | fGlauberEnergy = 91.*GeV;
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| 58 | fLowEnergy = 20.*MeV;
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| 59 | fNucleon = 0;
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| 60 | fGlauber = 0;
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| 61 | fHadron = 0;
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| 62 | particle = 0;
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| 63 | isProton = false;
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| 64 | isInitialized = false;
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| [819] | 65 | }
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| 66 |
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| 67 | //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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| 68 |
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| 69 | G4BGGNucleonElasticXS::~G4BGGNucleonElasticXS()
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| 70 | {
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| 71 | delete fGlauber;
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| 72 | delete fNucleon;
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| [962] | 73 | delete fHadron;
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| [819] | 74 | }
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| 75 |
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| 76 |
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| [1340] | 77 | G4double
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| 78 | G4BGGNucleonElasticXS::GetZandACrossSection(const G4DynamicParticle* dp,
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| 79 | G4int Z, G4int A, G4double)
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| [819] | 80 | {
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| 81 | G4double cross = 0.0;
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| 82 | G4double ekin = dp->GetKineticEnergy();
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| [1340] | 83 | if(Z > 92) Z = 92;
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| [819] | 84 |
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| [962] | 85 | if(ekin <= fLowEnergy) {
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| [1340] | 86 | cross = theCoulombFac[Z];
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| [962] | 87 | if(isProton) { cross *= CoulombFactor(ekin, A); }
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| 88 |
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| [1340] | 89 | } else if(Z == 1) {
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| 90 | if( A < 2) {
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| [1228] | 91 | fHadron->GetHadronNucleonXscNS(dp, G4Proton::Proton());
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| [962] | 92 | cross = fHadron->GetElasticHadronNucleonXsc();
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| 93 | } else {
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| [1228] | 94 | fHadron->GetHadronNucleonXscNS(dp, G4Proton::Proton());
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| [962] | 95 | cross = fHadron->GetElasticHadronNucleonXsc();
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| [1228] | 96 | fHadron->GetHadronNucleonXscNS(dp, G4Neutron::Neutron());
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| [962] | 97 | cross += fHadron->GetElasticHadronNucleonXsc();
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| 98 | }
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| 99 | } else if(ekin > fGlauberEnergy) {
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| [1340] | 100 | cross = theGlauberFac[Z]*fGlauber->GetElasticGlauberGribov(dp, Z, A);
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| [819] | 101 | } else {
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| [962] | 102 | cross = fNucleon->GetElasticCrossSection(dp, Z, A);
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| [819] | 103 | }
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| 104 |
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| 105 | if(verboseLevel > 1)
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| 106 | G4cout << "G4BGGNucleonElasticXS::GetCrossSection for "
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| 107 | << dp->GetDefinition()->GetParticleName()
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| 108 | << " Ekin(GeV)= " << dp->GetKineticEnergy()
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| 109 | << " in nucleus Z= " << Z << " A= " << A
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| 110 | << " XS(b)= " << cross/barn
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| 111 | << G4endl;
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| 112 |
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| 113 | return cross;
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| 114 | }
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| 115 |
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| 116 | //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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| 117 |
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| [962] | 118 | void G4BGGNucleonElasticXS::BuildPhysicsTable(const G4ParticleDefinition& p)
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| [819] | 119 | {
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| [962] | 120 | if(&p == G4Proton::Proton() || &p == G4Neutron::Neutron()) {
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| 121 | particle = &p;
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| 122 | Initialise();
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| 123 | } else {
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| 124 | G4cout << "### G4BGGNucleonElasticXS WARNING: is not applicable to "
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| 125 | << p.GetParticleName()
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| 126 | << G4endl;
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| 127 | }
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| [819] | 128 | }
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| 129 |
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| 130 | //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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| 131 |
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| 132 | void G4BGGNucleonElasticXS::DumpPhysicsTable(const G4ParticleDefinition&)
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| 133 | {
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| 134 | G4cout << "G4BGGNucleonElasticXS:"<<G4endl;
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| 135 | }
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| 136 |
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| 137 | //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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| 138 |
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| 139 | void G4BGGNucleonElasticXS::Initialise()
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| 140 | {
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| [962] | 141 | if(isInitialized) return;
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| 142 | isInitialized = true;
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| 143 |
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| 144 | fNucleon = new G4NucleonNuclearCrossSection();
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| 145 | fGlauber = new G4GlauberGribovCrossSection();
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| 146 | fHadron = new G4HadronNucleonXsc();
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| 147 | fNucleon->BuildPhysicsTable(*particle);
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| 148 | fGlauber->BuildPhysicsTable(*particle);
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| 149 | if(particle == G4Proton::Proton()) isProton = true;
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| 150 |
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| [819] | 151 | G4ParticleDefinition* part = const_cast<G4ParticleDefinition*>(particle);
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| 152 | G4ThreeVector mom(0.0,0.0,1.0);
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| [962] | 153 | G4DynamicParticle dp(part, mom, fGlauberEnergy);
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| [819] | 154 |
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| 155 | G4NistManager* nist = G4NistManager::Instance();
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| 156 |
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| [1340] | 157 | G4double csup, csdn;
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| 158 | G4int A;
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| [819] | 159 |
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| 160 | if(verboseLevel > 0) G4cout << "### G4BGGNucleonElasticXS::Initialise for "
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| 161 | << particle->GetParticleName() << G4endl;
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| 162 |
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| 163 | for(G4int iz=2; iz<93; iz++) {
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| 164 |
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| 165 | G4double Z = G4double(iz);
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| [1340] | 166 | A = G4lrint(nist->GetAtomicMassAmu(iz));
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| [819] | 167 |
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| [1340] | 168 | csup = fGlauber->GetElasticGlauberGribov(&dp, iz, A);
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| 169 | csdn = fNucleon->GetElasticCrossSection(&dp, iz, A);
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| [819] | 170 |
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| [962] | 171 | theGlauberFac[iz] = csdn/csup;
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| [819] | 172 | if(verboseLevel > 0) G4cout << "Z= " << Z << " A= " << A
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| [962] | 173 | << " factor= " << theGlauberFac[iz] << G4endl;
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| [819] | 174 | }
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| [962] | 175 | dp.SetKineticEnergy(fLowEnergy);
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| [1228] | 176 | fHadron->GetHadronNucleonXscNS(&dp, G4Proton::Proton());
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| [962] | 177 | theCoulombFac[1] = fHadron->GetElasticHadronNucleonXsc();
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| [1340] | 178 | if(isProton) { theCoulombFac[1] /= CoulombFactor(fLowEnergy, 1); }
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| [962] | 179 |
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| 180 | for(G4int iz=2; iz<93; iz++) {
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| 181 |
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| 182 | G4double Z = G4double(iz);
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| [1340] | 183 | A = G4lrint(nist->GetAtomicMassAmu(iz));
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| [962] | 184 |
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| [1340] | 185 | theCoulombFac[iz] = fNucleon->GetElasticCrossSection(&dp, iz, A);
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| [962] | 186 | if(isProton) { theCoulombFac[iz] /= CoulombFactor(fLowEnergy, A); }
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| 187 | if(verboseLevel > 0) G4cout << "Z= " << Z << " A= " << A
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| 188 | << " factor= " << theCoulombFac[iz] << G4endl;
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| 189 | }
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| [819] | 190 | }
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| 191 |
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| 192 | //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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| 193 |
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| [1340] | 194 | G4double G4BGGNucleonElasticXS::CoulombFactor(G4double kinEnergy, G4int A)
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| [962] | 195 | {
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| [1340] | 196 | G4double res = 0.0;
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| [962] | 197 | if(kinEnergy <= DBL_MIN) return res;
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| [1340] | 198 | else if(A < 2) return kinEnergy*kinEnergy;
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| [819] | 199 |
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| [962] | 200 | G4double elog = std::log10(kinEnergy/GeV);
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| [1340] | 201 | G4double aa = A;
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| [962] | 202 |
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| 203 | // from G4ProtonInelasticCrossSection
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| [1340] | 204 | G4double f1 = 8.0 - 8.0/aa - 0.008*aa;
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| 205 | G4double f2 = 2.34 - 5.4/aa - 0.0028*aa;
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| [962] | 206 |
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| 207 | res = 1.0/(1.0 + std::exp(-f1*(elog + f2)));
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| 208 |
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| [1340] | 209 | f1 = 5.6 - 0.016*aa;
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| 210 | f2 = 1.37 + 1.37/aa;
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| 211 | res *= ( 1.0 + (0.8 + 18./aa - 0.002*aa)/(1.0 + std::exp(f1*(elog + f2))));
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| [962] | 212 | return res;
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| 213 | }
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| 214 |
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| 215 |
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