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geant4/source/processes/electromagnetic/highenergy/src/G4eeToHadrons.cc
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2021-06-25 16:12:29 +02:00

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//
// ********************************************************************
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// * *
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//
//
// -------------------------------------------------------------------
//
// GEANT4 Class file
//
//
// File name: G4eeToHadrons
//
// Author: Vladimir Ivanchenko on base of Michel Maire code
//
// Creation date: 02.08.2004
//
// Modifications:
// 08-11-04 Migration to new interface of Store/Retrieve tables (V.Ivantchenko)
// 08-04-05 Major optimisation of internal interfaces (V.Ivantchenko)
// 23-11-05 Istert AddEmModel which was lost (V.Ivantchenko)
//
//
// -------------------------------------------------------------------
//
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#include "G4eeToHadrons.hh"
#include "G4SystemOfUnits.hh"
#include "G4MaterialCutsCouple.hh"
#include "G4Gamma.hh"
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using namespace std;
G4eeToHadrons::G4eeToHadrons(const G4String& name)
: G4VEmProcess(name)
{
//SetVerboseLevel(2);
SetProcessSubType(fAnnihilationToHadrons);
SetBuildTableFlag(false);
SetCrossSectionType(fEmOnePeak);
SetSecondaryParticle(G4Gamma::Gamma());
}
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G4eeToHadrons::~G4eeToHadrons()
{}
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G4bool G4eeToHadrons::IsApplicable(const G4ParticleDefinition& p)
{
return (&p == G4Positron::Positron());
}
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void G4eeToHadrons::InitialiseProcess(const G4ParticleDefinition*)
{
if(!isInitialised) {
isInitialised = true;
SetParticle(G4Positron::Positron());
multimodel = new G4eeToHadronsMultiModel(verboseLevel);
if(csFactor > 1.0) multimodel->SetCrossSecFactor(csFactor);
SetEmModel(multimodel);
AddEmModel(1, multimodel);
}
}
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void G4eeToHadrons::StreamProcessInfo(std::ostream& outFile) const
{
multimodel->ModelDescription(outFile);
}
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void G4eeToHadrons::SetCrossSecFactor(G4double fac)
{
if(multimodel) multimodel->SetCrossSecFactor(fac);
csFactor = fac;
}
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void G4eeToHadrons::ProcessDescription(std::ostream& out) const
{
out << "G4eeToHadrons - positron annihilation on atomic electrons" << G4endl;
G4VEmProcess::ProcessDescription(out);
}
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