// // ******************************************************************** // * License and Disclaimer * // * * // * The Geant4 software is copyright of the Copyright Holders of * // * the Geant4 Collaboration. It is provided under the terms and * // * conditions of the Geant4 Software License, included in the file * // * LICENSE and available at http://cern.ch/geant4/license . These * // * include a list of copyright holders. * // * * // * Neither the authors of this software system, nor their employing * // * institutes,nor the agencies providing financial support for this * // * work make any representation or warranty, express or implied, * // * regarding this software system or assume any liability for its * // * use. Please see the license in the file LICENSE and URL above * // * for the full disclaimer and the limitation of liability. * // * * // * This code implementation is the result of the scientific and * // * technical work of the GEANT4 collaboration. * // * By using, copying, modifying or distributing the software (or * // * any work based on the software) you agree to acknowledge its * // * use in resulting scientific publications, and indicate your * // * acceptance of all terms of the Geant4 Software license. * // ******************************************************************** // // neutron_hp -- source file // J.P. Wellisch, Nov-1996 // A prototype of the low energy neutron transport model. // // P. Arce, June-2014 Conversion neutron_hp to particle_hp // #include "G4ParticleHPData.hh" #include "G4LPhysicsFreeVector.hh" G4ParticleHPData::G4ParticleHPData(G4ParticleDefinition* projectile ) : theProjectile(projectile) { //const char* theDataDirVariable; if( projectile == G4Neutron::Neutron() ) { theDataDirVariable = "G4NEUTRONHPDATA"; }else if( projectile == G4Proton::Proton() ) { theDataDirVariable = "G4PROTONHPDATA"; }else if( projectile == G4Deuteron::Deuteron() ) { theDataDirVariable = "G4DEUTERONHPDATA"; }else if( projectile == G4Triton::Triton() ) { theDataDirVariable = "G4TRITONHPDATA"; }else if( projectile == G4He3::He3() ) { theDataDirVariable = "G4HE3HPDATA"; }else if( projectile == G4Alpha::Alpha() ) { theDataDirVariable = "G4ALPHAHPDATA"; } numEle = G4Element::GetNumberOfElements(); for ( G4int i = 0 ; i < numEle ; i++ ) theData.push_back ( new G4ParticleHPElementData ); // G4cout << "G4ParticleHPData::G4ParticleHPData(): numEle="<::iterator it = theData.begin() ; it != theData.end() ; it++ ) delete *it; theData.clear(); } G4ParticleHPData * G4ParticleHPData::Instance(G4ParticleDefinition* projectile) { static G4ThreadLocal G4ParticleHPData *theCrossSectionData_G4MT_TLS_ = 0 ; if (!theCrossSectionData_G4MT_TLS_) theCrossSectionData_G4MT_TLS_ = new G4ParticleHPData(projectile) ; G4ParticleHPData &theCrossSectionData = *theCrossSectionData_G4MT_TLS_; return &theCrossSectionData; } G4PhysicsVector * G4ParticleHPData::DoPhysicsVector(G4ParticleHPVector * theVector) { // G4cout << "Entered G4ParticleHPData::DoPhysicsVector."<GetVectorLength(); // G4cout <<"zahl der energie-punkte "<< len<GetX(0); G4double emax = theVector->GetX(len-1); // G4cout <<"zahl der energie-punkte "<< len<<" "<> dummy; G4LPhysicsFreeVector * theResult = new G4LPhysicsFreeVector(len, emin, emax); for (G4int i=0; iPutValues(i, theVector->GetX(i), theVector->GetY(i)); } return theResult; } void G4ParticleHPData::addPhysicsVector() { for ( G4int i = numEle; i < (G4int)G4Element::GetNumberOfElements() ; i++ ) { theData.push_back ( new G4ParticleHPElementData ); (*theData[i]).Init((*(G4Element::GetElementTable()))[i], theProjectile, theDataDirVariable); } numEle = G4Element::GetNumberOfElements(); }