288 lines
8.4 KiB
Plaintext
288 lines
8.4 KiB
Plaintext
// This code implementation is the intellectual property of
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// the GEANT4 collaboration.
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//
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// By copying, distributing or modifying the Program (or any work
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// based on the Program) you indicate your acceptance of this statement,
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// and all its terms.
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//
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// $Id: EXPO_PhysicsList.icc,v 1.4 1999/12/15 14:48:41 gunter Exp $
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// GEANT4 tag $Name: geant4-03-01 $
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//
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//
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// ------------------------------------------------------------
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// GEANT 4 class header file
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//
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// This is a version for maximum particle set
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// History
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// first version 10 Jan. 1998 by H.Kurashige
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// add decay at rest 26 Feb. 1998 by H.Kurashige
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// ------------------------------------------------------------
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#include "globals.hh"
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#include "EXPO_PhysicsList.hh"
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#include "G4ParticleDefinition.hh"
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#include "G4ParticleWithCuts.hh"
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#include "G4ProcessManager.hh"
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#include "G4ProcessVector.hh"
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#include "G4ParticleTypes.hh"
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#include "G4ParticleTable.hh"
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#include "G4Material.hh"
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#include "G4MaterialTable.hh"
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#include "G4ios.hh"
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#include "g4std/iomanip"
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EXPO_PhysicsList::EXPO_PhysicsList(): G4VUserPhysicsList()
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{
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SetVerboseLevel(1);
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}
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EXPO_PhysicsList::~EXPO_PhysicsList()
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{
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}
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void EXPO_PhysicsList::ConstructParticle()
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{
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// In this method, static member functions should be called
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// for all particles which you want to use.
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// This ensures that objects of these particle types will be
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// created in the program.
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ConstructBosons();
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ConstructLeptons();
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ConstructMesons();
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ConstructBarions();
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}
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void EXPO_PhysicsList::ConstructBosons()
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{
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// pseudo-particles
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G4Geantino::GeantinoDefinition();
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G4ChargedGeantino::ChargedGeantinoDefinition();
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// gamma
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G4Gamma::GammaDefinition();
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// optical photon
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G4OpticalPhoton::OpticalPhotonDefinition();
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}
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void EXPO_PhysicsList::ConstructLeptons()
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{
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// leptons
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G4MuonPlus::MuonPlusDefinition();
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G4MuonMinus::MuonMinusDefinition();
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G4TauMinus::TauMinusDefinition();
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G4TauPlus::TauPlusDefinition();
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G4Electron::ElectronDefinition();
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G4Positron::PositronDefinition();
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G4NeutrinoTau::NeutrinoTauDefinition();
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G4AntiNeutrinoTau::AntiNeutrinoTauDefinition();
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G4NeutrinoMu::NeutrinoMuDefinition();
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G4AntiNeutrinoMu::AntiNeutrinoMuDefinition();
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G4NeutrinoE::NeutrinoEDefinition();
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G4AntiNeutrinoE::AntiNeutrinoEDefinition();
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}
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void EXPO_PhysicsList::ConstructMesons()
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{
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// mesons
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G4PionPlus::PionPlusDefinition();
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G4PionMinus::PionMinusDefinition();
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G4PionZero::PionZeroDefinition();
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G4Eta::EtaDefinition();
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G4KaonPlus::KaonPlusDefinition();
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G4KaonMinus::KaonMinusDefinition();
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G4KaonZero::KaonZeroDefinition();
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G4AntiKaonZero::AntiKaonZeroDefinition();
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G4KaonZeroLong::KaonZeroLongDefinition();
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G4KaonZeroShort::KaonZeroShortDefinition();
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G4DMesonPlus::DMesonPlusDefinition();
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G4DMesonMinus::DMesonMinusDefinition();
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G4DMesonZero::DMesonZeroDefinition();
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G4AntiDMesonZero::AntiDMesonZeroDefinition();
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G4DsMesonPlus::DsMesonPlusDefinition();
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G4DsMesonMinus::DsMesonMinusDefinition();
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G4JPsi::JPsiDefinition();
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G4BMesonPlus::BMesonPlusDefinition();
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G4BMesonMinus::BMesonMinusDefinition();
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G4BMesonZero::BMesonZeroDefinition();
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G4AntiBMesonZero::AntiBMesonZeroDefinition();
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G4BsMesonZero::BsMesonZeroDefinition();
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G4AntiBsMesonZero::AntiBsMesonZeroDefinition();
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}
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void EXPO_PhysicsList::ConstructBarions()
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{
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// barions
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G4Proton::ProtonDefinition();
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G4AntiProton::AntiProtonDefinition();
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G4Neutron::NeutronDefinition();
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G4AntiNeutron::AntiNeutronDefinition();
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G4Lambda::LambdaDefinition();
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G4AntiLambda::AntiLambdaDefinition();
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G4SigmaZero::SigmaZeroDefinition();
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G4AntiSigmaZero::AntiSigmaZeroDefinition();
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G4SigmaPlus::SigmaPlusDefinition();
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G4AntiSigmaPlus::AntiSigmaPlusDefinition();
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G4SigmaMinus::SigmaMinusDefinition();
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G4AntiSigmaMinus::AntiSigmaMinusDefinition();
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G4XiZero::XiZeroDefinition();
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G4AntiXiZero::AntiXiZeroDefinition();
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G4XiMinus::XiMinusDefinition();
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G4AntiXiMinus::AntiXiMinusDefinition();
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G4OmegaMinus::OmegaMinusDefinition();
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G4AntiOmegaMinus::AntiOmegaMinusDefinition();
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G4LambdacPlus::LambdacPlusDefinition();
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G4SigmacPlusPlus::SigmacPlusPlusDefinition();
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G4SigmacPlus::SigmacPlusDefinition();
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G4SigmacZero::SigmacZeroDefinition();
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G4XicPlus::XicPlusDefinition();
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G4XicZero::XicZeroDefinition();
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G4OmegacZero::OmegacZeroDefinition();
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G4AntiLambdacPlus::AntiLambdacPlusDefinition();
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G4AntiSigmacPlusPlus::AntiSigmacPlusPlusDefinition();
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G4AntiSigmacPlus::AntiSigmacPlusDefinition();
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G4AntiSigmacZero::AntiSigmacZeroDefinition();
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G4AntiXicPlus::AntiXicPlusDefinition();
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G4AntiXicZero::AntiXicZeroDefinition();
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G4AntiOmegacZero::AntiOmegacZeroDefinition();
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}
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void EXPO_PhysicsList::ConstructIons()
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{
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// nuclei
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G4Alpha::AlphaDefinition();
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G4Deuteron::DeuteronDefinition();
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G4Triton::TritonDefinition();
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}
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void EXPO_PhysicsList::ConstructProcess()
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{
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AddTransportation();
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ConstructEM();
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ConstructLeptHad();
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ConstructHad();
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ConstructGeneral();
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}
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#include "G4ComptonScattering.hh"
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#include "G4GammaConversion.hh"
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#include "G4PhotoElectricEffect.hh"
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#include "G4MultipleScattering.hh"
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#include "G4eIonisation.hh"
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#include "G4eBremsstrahlung.hh"
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#include "G4eplusAnnihilation.hh"
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#include "G4MuIonisation.hh"
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#include "G4MuBremsstrahlung.hh"
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#include "G4MuPairProduction.hh"
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#include "G4hIonisation.hh"
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void EXPO_PhysicsList::ConstructEM()
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{
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theParticleIterator->reset();
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while( (*theParticleIterator)() ){
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G4ParticleDefinition* particle = theParticleIterator->value();
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G4ProcessManager* pmanager = particle->GetProcessManager();
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G4String particleName = particle->GetParticleName();
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if (particleName == "gamma") {
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// gamma
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// Construct processes for gamma
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pmanager->AddDiscreteProcess(new G4GammaConversion());
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pmanager->AddDiscreteProcess(new G4ComptonScattering());
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pmanager->AddDiscreteProcess(new G4PhotoElectricEffect());
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} else if (particleName == "e-") {
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//electron
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// Construct processes for electron
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pmanager->AddProcess(new G4MultipleScattering(),-1,1,1);
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pmanager->AddProcess(new G4eIonisation(),-1,2,2);
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pmanager->AddProcess(new G4eBremsstrahlung(),-1,-1,3);
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} else if (particleName == "e+") {
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//positron
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// Construct processes for positron
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pmanager->AddProcess(new G4MultipleScattering(),-1,1,1);
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pmanager->AddProcess(new G4eIonisation(),-1,2,2);
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pmanager->AddProcess(new G4eBremsstrahlung(),-1,-1,3);
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pmanager->AddProcess(new G4eplusAnnihilation(),0,-1,4);
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} else if( particleName == "mu+" ||
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particleName == "mu-" ) {
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//muon
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// Construct processes for muon+
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pmanager->AddProcess(new G4MultipleScattering(),-1,1,1);
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pmanager->AddProcess(new G4MuIonisation(),-1,2,2);
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pmanager->AddProcess(new G4MuBremsstrahlung(),-1,-1,3);
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pmanager->AddProcess(new G4MuPairProduction(),-1,-1,4);
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} else {
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if ((particle->GetPDGCharge() != 0.0) &&
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(particle->GetParticleName() != "chargedgeantino")) {
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// all others charged particles except geantino
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pmanager->AddProcess(new G4MultipleScattering(),-1,1,1);
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pmanager->AddProcess(new G4hIonisation(),-1,2,2);
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}
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}
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}
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}
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void EXPO_PhysicsList::ConstructHad()
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{;}
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void EXPO_PhysicsList::ConstructLeptHad()
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{;}
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#include "G4Decay.hh"
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void EXPO_PhysicsList::ConstructGeneral()
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{
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G4Decay* theDecayProcess = new G4Decay();
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theParticleIterator->reset();
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while( (*theParticleIterator)() ){
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G4ParticleDefinition* particle = theParticleIterator->value();
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G4ProcessManager* pmanager = particle->GetProcessManager();
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if (theDecayProcess->IsApplicable(*particle)) {
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pmanager->AddProcess(theDecayProcess, INT_MAX, -1, INT_MAX);
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}
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}
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}
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void EXPO_PhysicsList::SetCuts()
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{
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SetCutsWithDefault();
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/*
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if (verboseLevel >0){
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G4cout << "EXPO_PhysicsList::SetCuts:";
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G4cout << "CutLength : " << cut/mm << " (mm)" << G4endl;
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}
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// set cut values for gamma at first and for e- second and next for e+,
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// because some processes for e+/e- need cut values for gamma
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SetCutValue(cut, "gamma");
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SetCutValue(cut, "e-");
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SetCutValue(cut, "e+");
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// set cut values for proton and anti_proton before all other hadrons
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// because some processes for hadrons need cut values for proton/anti_proton
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SetCutValue(cut, "proton");
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SetCutValue(cut, "anti_proton");
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SetCutValueForOthers(cut);
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if (verboseLevel>1) {
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DumpCutValuesTable();
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}
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*/
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}
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