G4HadronFissionProcess.cc

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00025 //
00026 // F.W. Jones, TRIUMF, 03-DEC-96
00027 // 
00028 // This is a prototype of a low-energy fission process.
00029 // Currently it is based on the GHEISHA routine FISSIO,
00030 // and conforms fairly closely to the original Fortran.
00031 // Note: energy is in MeV and momentum is in MeV/c.
00032 //
00033 // 27-MAR-97 F.W.Jones: first version for Alpha release
00034 // 20-JUN-97 F.W.Jones: added check for zero cross section
00035 //
00036 // 19-MAY-98 FWJ: variant G4HadronFission process for
00037 // G4CrossSectionDataSet/DataStore class design.
00038 // 29-JUN-98 FWJ: default data set G4HadronCrossSections
00039 // 01-SEP-2008 V.Ivanchenko: use methods from the base class
00040 // 14-Sep-12 M.Kelsey -- Pass subType code to base ctor
00041 //
00042 
00043 #include "G4HadronFissionProcess.hh"
00044 #include "G4HadronFissionDataSet.hh"
00045 #include "G4Neutron.hh"
00046 
00047 G4HadronFissionProcess::G4HadronFissionProcess(const G4String& processName) : 
00048   G4HadronicProcess(processName,fFission)
00049 {
00050   AddDataSet(new G4HadronFissionDataSet());
00051 }
00052 
00053 
00054 G4HadronFissionProcess::~G4HadronFissionProcess()
00055 {}
00056 
00057 
00058 G4bool G4HadronFissionProcess::IsApplicable(const G4ParticleDefinition& p)
00059 { 
00060   return (&p == G4Neutron::Neutron());
00061 }
00062 
00063 
00064 void G4HadronFissionProcess::ProcessDescription(std::ostream& outFile) const
00065 {
00066   outFile << "This process handles neutron-induced fission of nuclei by\n"
00067           << "invoking one or more hadronic models and one or more hadronic\n"
00068           << "cross sections.\n";
00069 }

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