// // ******************************************************************** // * DISCLAIMER * // * * // * The following disclaimer summarizes all the specific disclaimers * // * of contributors to this software. The specific disclaimers,which * // * govern, are listed with their locations in: * // * http://cern.ch/geant4/license * // * * // * 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. * // * * // * This code implementation is the intellectual property of the * // * GEANT4 collaboration. * // * By copying, distributing or modifying the Program (or any work * // * based on the Program) you indicate your acceptance of this * // * statement, and all its terms. * // ******************************************************************** // // // $Id: G4NeutronHPPhotonDist.hh,v 1.4.8.1 2001/06/28 19:14:20 gunter Exp $ // GEANT4 tag $Name: $ // // Hadronic Process: Very Low Energy Neutron X-Sections // original by H.P. Wellisch, TRIUMF, 14-Feb-97 #ifndef G4NeutronHPPhotonDist_h #define G4NeutronHPPhotonDist_h 1 #include "globals.hh" #include "g4std/fstream" #include "G4ios.hh" #include "globals.hh" #include "G4NeutronHPVector.hh" #include "G4NeutronHPLegendreTable.hh" #include "G4NeutronHPAngularP.hh" #include "G4NeutronHPPartial.hh" #include "G4NeutronHPFastLegendre.hh" #include "G4NeutronHPInterpolator.hh" #include "G4ReactionProductVector.hh" #include "G4ReactionProduct.hh" #include "G4Gamma.hh" #include "G4InterpolationManager.hh" class G4NeutronHPPhotonDist { public: G4NeutronHPPhotonDist() { disType = NULL; energy = NULL; theYield = NULL; thePartialXsec = NULL; isPrimary = NULL; theShells = NULL; theGammas = NULL; nNeu = NULL; theLegendre = NULL; theAngular = NULL; distribution = NULL; probs = NULL; partials = NULL; actualMult = NULL; theLevelEnergies = NULL; theTransitionProbabilities = NULL; thePhotonTransitionFraction = NULL; } ~G4NeutronHPPhotonDist() { if(disType != NULL) delete [] disType; if(energy != NULL) delete [] energy; if(theYield != NULL) delete [] theYield; if(thePartialXsec != NULL) delete [] thePartialXsec; if(isPrimary != NULL) delete [] isPrimary; if(theShells != NULL) delete [] theShells; if(theGammas != NULL) delete [] theGammas; if(nNeu != NULL) delete [] nNeu; if(theLegendre != NULL) delete [] theLegendre; if(theAngular != NULL) delete [] theAngular; if(distribution != NULL) delete [] distribution; if(probs != NULL) delete [] probs; if(partials != NULL) delete [] partials; if(actualMult != NULL) delete [] actualMult; if(theLevelEnergies != NULL) delete theLevelEnergies; if(theTransitionProbabilities != NULL) delete theTransitionProbabilities; if(thePhotonTransitionFraction != NULL) delete thePhotonTransitionFraction; } G4bool InitMean(G4std::ifstream & aDataFile); void InitAngular(G4std::ifstream & aDataFile); void InitEnergies(G4std::ifstream & aDataFile); void InitPartials(G4std::ifstream & aDataFile); G4ReactionProductVector * GetPhotons(G4double anEnergy); inline G4double GetTargetMass() {return targetMass;} inline G4bool NeedsCascade() {return repFlag==2;} inline G4double GetLevelEnergy() {return theBaseEnergy;} private: G4int repFlag; //representation as multiplicities or transition probability arrays. G4double targetMass; G4int nDiscrete; //number of discrete photons G4int * disType; // discrete, or continuum photons G4double * energy; // photon energies G4NeutronHPVector * theYield; // multiplicity as a function of neutron energy. G4NeutronHPVector theTotalXsec; G4NeutronHPVector * thePartialXsec; G4int * isPrimary; G4int isoFlag; // isotropic or not? G4int tabulationType; G4int nDiscrete2; G4int nIso; G4double * theShells; G4double * theGammas; G4int * nNeu; G4InterpolationManager theLegendreManager; G4NeutronHPLegendreTable ** theLegendre; G4NeutronHPAngularP ** theAngular; G4int * distribution; // not used for the moment. G4int nPartials; G4NeutronHPVector * probs; // probabilities for the partial distributions. G4NeutronHPPartial ** partials; // the partials, parallel to the above G4int * actualMult; // for transition prob arrays start G4int theInternalConversionFlag; G4int nGammaEnergies; G4double theBaseEnergy; G4double * theLevelEnergies; G4double * theTransitionProbabilities; G4double * thePhotonTransitionFraction; // for transition prob arrays end G4NeutronHPFastLegendre theLegend; // fast look-up for leg-integrals G4NeutronHPInterpolator theInt; // interpolation }; #endif