34#define INCLXX_IN_GEANT4_MODE 1 
   55  namespace CrossSections {
 
  317      piPlusProjectile.
setEnergy(piPlusProjectile.
getMass()+projectileKineticEnergy);
 
  320      piZeroProjectile.
setEnergy(piZeroProjectile.
getMass()+projectileKineticEnergy);
 
  323      piMinusProjectile.
setEnergy(piMinusProjectile.
getMass()+projectileKineticEnergy);
 
  328      const G4double sigmapipp = 
total(&piPlusProjectile, &protonTarget);
 
  329      const G4double sigmapipn = 
total(&piPlusProjectile, &neutronTarget);
 
  330      const G4double sigmapi0p = 
total(&piZeroProjectile, &protonTarget);
 
  331      const G4double sigmapi0n = 
total(&piZeroProjectile, &neutronTarget);
 
  332      const G4double sigmapimp = 
total(&piMinusProjectile, &protonTarget);
 
  333      const G4double sigmapimn = 
total(&piMinusProjectile, &neutronTarget);
 
  342      return interactionDistance;
 
  351      const G4double kineticEnergyPerNucleon = kineticEnergy / aSpecies.
theA;
 
  354      protonProjectile.
setEnergy(protonProjectile.
getMass()+kineticEnergyPerNucleon);
 
  357      neutronProjectile.
setEnergy(neutronProjectile.
getMass()+kineticEnergyPerNucleon);
 
  362      const G4double sigmapp = 
total(&protonProjectile, &protonTarget);
 
  363      const G4double sigmapn = 
total(&protonProjectile, &neutronTarget);
 
  364      const G4double sigmann = 
total(&neutronProjectile, &neutronTarget);
 
  373      return interactionDistance;
 
  389      const G4double sigmakpp = 
total(&kpProjectile, &protonTarget);
 
  390      const G4double sigmakpn = 
total(&kpProjectile, &neutronTarget);
 
  391      const G4double sigmakzp = 
total(&kzProjectile, &protonTarget);
 
  392      const G4double sigmakzn = 
total(&kzProjectile, &neutronTarget);
 
  397      return interactionDistance;
 
  413      const G4double sigmakmp = 
total(&kmProjectile, &protonTarget);
 
  414      const G4double sigmakmn = 
total(&kmProjectile, &neutronTarget);
 
  415      const G4double sigmakzp = 
total(&kzProjectile, &protonTarget);
 
  416      const G4double sigmakzn = 
total(&kzProjectile, &neutronTarget);
 
  421      return interactionDistance;
 
  444      const G4double sigmaln = 
total(&lProjectile, &neutronTarget);
 
  445      const G4double sigmaspp = 
total(&spProjectile, &protonTarget);
 
  446      const G4double sigmaspn = 
total(&spProjectile, &neutronTarget);
 
  447      const G4double sigmaszp = 
total(&szProjectile, &protonTarget);
 
  448      const G4double sigmaszn = 
total(&szProjectile, &neutronTarget);
 
  449      const G4double sigmasmp = 
total(&smProjectile, &protonTarget);
 
  450      const G4double sigmasmn = 
total(&smProjectile, &neutronTarget);
 
  455      return interactionDistance;
 
  478                  INCL_WARN(
"Truncated multipion cross sections were requested, but the specified maximum\n" 
  479                            << 
"number of pions is <=0. Falling back to standard multipion cross-sections.\n");
 
Cross sections used in INCL4.6.
Multipion and mesonic Resonances cross sections.
Cross sections used in INCL Multipions.
Multipion, mesonic Resonances and strange cross sections.
Truncated multipion cross sections.
G4int getMaxNumberMultipions() const
Get the maximum number of pions for multipion collisions.
CrossSectionsType getCrossSectionsType() const
Get the Cross Section type.
Cross sections used in INCL4.6.
Multipion and mesonic Resonances cross sections.
Cross sections used in INCL Multipions.
Multipion, mesonic Resonances and strange cross sections.
Truncated multipion cross sections.
Abstract interface for the cross-section classes.
virtual G4double NDeltaToNSK(Particle const *const p1, Particle const *const p2)=0
virtual G4double NDeltaToDeltaSK(Particle const *const p1, Particle const *const p2)=0
virtual G4double NKbToNKbpi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToMissingStrangeness(Particle const *const p1, Particle const *const p2)=0
virtual G4double NDeltaToNNKKb(Particle const *const p1, Particle const *const p2)=0
virtual G4double piNToEtaN(Particle const *const p1, Particle const *const p2)=0
Cross section for PiN->EtaN.
virtual G4double NKbToS2pi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToNNOmegaxPi(const G4int xpi, Particle const *const p1, Particle const *const p2)=0
Cross section for NN->NNEtaxPi.
virtual G4double NNToNNEta(Particle const *const p1, Particle const *const p2)=0
Cross section for NN->NNEta (inclusive)
virtual G4double NNToNSKpi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NKbToNKb2pi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NYelastic(Particle const *const p1, Particle const *const p2)=0
elastic scattering for Nucleon-Strange Particles cross sections
virtual G4double NDeltaToNLK(Particle const *const p1, Particle const *const p2)=0
Nucleon-Delta to Stange particles cross sections.
virtual G4double piNToOmegaN(Particle const *const p1, Particle const *const p2)=0
Cross section for PiN->OmegaN.
virtual G4double NKbToNKb(Particle const *const p1, Particle const *const p2)=0
Nucleon-antiKaon inelastic cross sections.
virtual G4double NpiToLK2pi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToNSK(Particle const *const p1, Particle const *const p2)=0
virtual G4double NKelastic(Particle const *const p1, Particle const *const p2)=0
virtual G4double NpiToLK(Particle const *const p1, Particle const *const p2)=0
Nucleon-Pion to Stange particles cross sections.
virtual G4double NKToNK(Particle const *const p1, Particle const *const p2)=0
Nucleon-Kaon inelastic cross sections.
virtual G4double NKbelastic(Particle const *const p1, Particle const *const p2)=0
virtual G4double p_pizToSzKp(Particle const *const p1, Particle const *const p2)=0
virtual G4double piNToDelta(Particle const *const p1, Particle const *const p2)=0
Cross section for piN->NDelta.
virtual G4double NNToNDeltaOmega(Particle const *const p1, Particle const *const p2)=0
Cross section for N-Delta-Eta production - NNEta Channel.
virtual G4double total(Particle const *const p1, Particle const *const p2)=0
Total (elastic+inelastic) particle-particle cross section.
virtual G4double NSToNS(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToNNOmega(Particle const *const p1, Particle const *const p2)=0
Cross section for NN->NNEta (inclusive)
virtual G4double NpiToSKpi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToNDelta(Particle const *const p1, Particle const *const p2)=0
Cross section for NN->NDelta.
virtual G4double NpiToMissingStrangeness(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToNNOmegaExclu(Particle const *const p1, Particle const *const p2)=0
Cross section for NN->NNEta (exclusive)
virtual G4double etaNToPiPiN(Particle const *const p1, Particle const *const p2)=0
Cross section for EtaN->PiPiN.
virtual G4double p_pimToSmKp(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToNDeltaEta(Particle const *const p1, Particle const *const p2)=0
Cross section for N-Delta-Eta production - NNEta Channel.
virtual G4double NpiToSK2pi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToNNKKb(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToNSK2pi(Particle const *const p1, Particle const *const p2)=0
virtual G4double elastic(Particle const *const p1, Particle const *const p2)=0
Elastic particle-particle cross section.
virtual G4double NDeltaToNN(Particle const *const p1, Particle const *const p2)=0
Cross section for NDelta->NN.
virtual G4double omegaNToPiN(Particle const *const p1, Particle const *const p2)=0
Cross section for OmegaN->PiN.
virtual G4double NKbToSpi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToNNEtaxPi(const G4int xpi, Particle const *const p1, Particle const *const p2)=0
Cross section for NN->NNEtaxPi.
virtual G4double etaPrimeNToPiN(Particle const *const p1, Particle const *const p2)=0
Cross section for EtaPrimeN->PiN.
virtual G4double piNToEtaPrimeN(Particle const *const p1, Particle const *const p2)=0
Cross section for PiN->EtaPrimeN.
virtual G4double etaNToPiN(Particle const *const p1, Particle const *const p2)=0
Cross section for EtaN->PiN.
virtual G4double NDeltaToDeltaLK(Particle const *const p1, Particle const *const p2)=0
virtual G4double NpiToSK(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToNLK(Particle const *const p1, Particle const *const p2)=0
Nucleon-Nucleon to Stange particles cross sections.
virtual G4double NNToNLKpi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NLToNS(Particle const *const p1, Particle const *const p2)=0
Nucleon-Hyperon cross sections.
virtual G4double NNToNLK2pi(Particle const *const p1, Particle const *const p2)=0
virtual G4double piNToxPiN(const G4int xpi, Particle const *const p1, Particle const *const p2)=0
Cross section for piN->piNpi.
virtual G4double omegaNToPiPiN(Particle const *const p1, Particle const *const p2)=0
Cross section for OmegaN->PiPiN.
virtual G4double NKbToLpi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToxPiNN(const G4int xpi, Particle const *const p1, Particle const *const p2)=0
Cross section for NN->xpiN.
virtual G4double NKToNKpi(Particle const *const p1, Particle const *const p2)=0
virtual G4double calculateNNAngularSlope(G4double energyCM, G4int iso)=0
Calculate the slope of the NN DDXS.
virtual G4double NpiToLKpi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NKbToL2pi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NSToNL(Particle const *const p1, Particle const *const p2)=0
virtual G4double p_pimToSzKz(Particle const *const p1, Particle const *const p2)=0
virtual G4double NKToNK2pi(Particle const *const p1, Particle const *const p2)=0
virtual G4double NpiToNKKb(Particle const *const p1, Particle const *const p2)=0
virtual G4double NNToNNEtaExclu(Particle const *const p1, Particle const *const p2)=0
Cross section for NN->NNEta (exclusive)
const ThreeVector & adjustMomentumFromEnergy()
Rescale the momentum to match the total energy.
void setEnergy(G4double energy)
G4double getMass() const
Get the cached particle mass.
G4double NSToNL(Particle const *const p1, Particle const *const p2)
G4double NNToNNKKb(Particle const *const p1, Particle const *const p2)
G4double elastic(Particle const *const p1, Particle const *const p2)
G4double NpiToSK(Particle const *const p1, Particle const *const p2)
G4double NNToNNOmega(Particle const *const p1, Particle const *const p2)
G4double NNToNNEta(Particle const *const p1, Particle const *const p2)
G4double piNToOmegaN(Particle const *const p1, Particle const *const p2)
G4double NKbToNKb2pi(Particle const *const p1, Particle const *const p2)
G4double interactionDistanceKbarN(const G4double projectileKineticEnergy)
Compute the "interaction distance".
G4double interactionDistancePiN(const G4double projectileKineticEnergy)
Compute the "interaction distance".
G4double NNToNDeltaOmega(Particle const *const p1, Particle const *const p2)
G4double NDeltaToDeltaLK(Particle const *const p1, Particle const *const p2)
G4double NNToNSKpi(Particle const *const p1, Particle const *const p2)
G4double etaNToPiN(Particle const *const p1, Particle const *const p2)
G4double NDeltaToNNKKb(Particle const *const p1, Particle const *const p2)
G4double NKbToLpi(Particle const *const p1, Particle const *const p2)
G4double NNToNLK2pi(Particle const *const p1, Particle const *const p2)
G4double etaNToPiPiN(Particle const *const p1, Particle const *const p2)
G4double NYelastic(Particle const *const p1, Particle const *const p2)
G4double NKbToS2pi(Particle const *const p1, Particle const *const p2)
G4double piNToEtaN(Particle const *const p1, Particle const *const p2)
G4double omegaNToPiN(Particle const *const p1, Particle const *const p2)
G4double NDeltaToNSK(Particle const *const p1, Particle const *const p2)
G4double NKbToSpi(Particle const *const p1, Particle const *const p2)
G4double NNToNDelta(Particle const *const p1, Particle const *const p2)
G4double p_pimToSzKz(Particle const *const p1, Particle const *const p2)
G4double NNToNSK(Particle const *const p1, Particle const *const p2)
G4double NDeltaToNLK(Particle const *const p1, Particle const *const p2)
G4double NLToNS(Particle const *const p1, Particle const *const p2)
G4double piNToDelta(Particle const *const p1, Particle const *const p2)
G4double NKbToNKb(Particle const *const p1, Particle const *const p2)
G4double NNToNSK2pi(Particle const *const p1, Particle const *const p2)
G4double NNToNLK(Particle const *const p1, Particle const *const p2)
Strange cross sections.
G4double NNToNNEtaExclu(Particle const *const p1, Particle const *const p2)
G4double interactionDistanceKN(const G4double projectileKineticEnergy)
Compute the "interaction distance".
G4double NNToNDeltaEta(Particle const *const p1, Particle const *const p2)
G4double NNToNNOmegaxPi(const G4int xpi, Particle const *const p1, Particle const *const p2)
G4double NNToNNEtaxPi(const G4int xpi, Particle const *const p1, Particle const *const p2)
G4double NKelastic(Particle const *const p1, Particle const *const p2)
G4double interactionDistanceYN(const G4double projectileKineticEnergy)
Compute the "interaction distance".
G4double NSToNS(Particle const *const p1, Particle const *const p2)
G4double NpiToNKKb(Particle const *const p1, Particle const *const p2)
G4double NpiToLK2pi(Particle const *const p1, Particle const *const p2)
G4double omegaNToPiPiN(Particle const *const p1, Particle const *const p2)
G4double NDeltaToDeltaSK(Particle const *const p1, Particle const *const p2)
G4double NpiToMissingStrangeness(Particle const *const p1, Particle const *const p2)
G4double total(Particle const *const p1, Particle const *const p2)
void setCrossSections(ICrossSections *c)
G4double NDeltaToNN(Particle const *const p1, Particle const *const p2)
G4double NpiToLKpi(Particle const *const p1, Particle const *const p2)
G4double piNToEtaPrimeN(Particle const *const p1, Particle const *const p2)
G4double NKbelastic(Particle const *const p1, Particle const *const p2)
void deleteCrossSections()
G4double NKbToNKbpi(Particle const *const p1, Particle const *const p2)
G4double NNToNLKpi(Particle const *const p1, Particle const *const p2)
G4double p_pizToSzKp(Particle const *const p1, Particle const *const p2)
G4double NKbToL2pi(Particle const *const p1, Particle const *const p2)
void initialize(Config const *const theConfig)
G4double etaPrimeNToPiN(Particle const *const p1, Particle const *const p2)
G4double NNToxPiNN(const G4int xpi, Particle const *const p1, Particle const *const p2)
G4double NKToNK2pi(Particle const *const p1, Particle const *const p2)
G4double NKToNKpi(Particle const *const p1, Particle const *const p2)
G4double calculateNNAngularSlope(G4double energyCM, G4int iso)
Calculate the slope of the NN DDXS.
G4double NNToNNOmegaExclu(Particle const *const p1, Particle const *const p2)
G4double interactionDistanceNN(const ParticleSpecies &aSpecies, const G4double kineticEnergy)
Compute the "interaction distance".
G4double NpiToSK2pi(Particle const *const p1, Particle const *const p2)
G4double NKToNK(Particle const *const p1, Particle const *const p2)
G4double NNToMissingStrangeness(Particle const *const p1, Particle const *const p2)
G4double piNToxPiN(const G4int xpi, Particle const *const p1, Particle const *const p2)
G4double NpiToLK(Particle const *const p1, Particle const *const p2)
G4double p_pimToSmKp(Particle const *const p1, Particle const *const p2)
G4double NpiToSKpi(Particle const *const p1, Particle const *const p2)
T max(const T t1, const T t2)
brief Return the largest of the two arguments
G4ThreadLocal ICrossSections * theCrossSections
@ MultiPionsAndResonancesCrossSections
@ MultiPionsCrossSections
@ TruncatedMultiPionsCrossSections
@ StrangenessCrossSections