39 outFile <<
"G4LESigmaMinusInelastic is one of the Low Energy Parameterized\n"
40 <<
"(LEP) models used to implement inelastic Sigma- scattering\n"
41 <<
"from nuclei. It is a re-engineered version of the GHEISHA\n"
42 <<
"code of H. Fesefeldt. It divides the initial collision\n"
43 <<
"products into backward- and forward-going clusters which are\n"
44 <<
"then decayed into final state hadrons. The model does not\n"
45 <<
"conserve energy on an event-by-event basis. It may be\n"
46 <<
"applied to Sigma- with initial energies between 0 and 25\n"
67 G4cout <<
"G4LESigmaMinusInelastic::ApplyYourself called" <<
G4endl;
69 G4cout <<
"target material = " << targetMaterial->
GetName() <<
", ";
79 modifiedOriginal = *originalIncident;
85 G4double p = std::sqrt( std::abs((et-amas)*(et+amas)) );
97 p = std::sqrt( std::abs((et-amas)*(et+amas)) );
105 targetParticle = *originalTarget;
108 G4bool incidentHasChanged =
false;
109 G4bool targetHasChanged =
false;
110 G4bool quasiElastic =
false;
117 Cascade(vec, vecLen, originalIncident, currentParticle, targetParticle,
118 incidentHasChanged, targetHasChanged, quasiElastic);
121 modifiedOriginal, targetNucleus, currentParticle,
122 targetParticle, incidentHasChanged, targetHasChanged,
125 SetUpChange(vec, vecLen, currentParticle, targetParticle, incidentHasChanged);
129 delete originalTarget;
134void G4LESigmaMinusInelastic::Cascade(
140 G4bool &incidentHasChanged,
157 G4double centerofmassEnergy = std::sqrt( mOriginal*mOriginal +
158 targetMass*targetMass +
159 2.0*targetMass*etOriginal );
160 G4double availableEnergy = centerofmassEnergy-(targetMass+mOriginal);
166 static G4bool first =
true;
167 const G4int numMul = 1200;
168 const G4int numSec = 60;
169 static G4double protmul[numMul], protnorm[numSec];
170 static G4double neutmul[numMul], neutnorm[numSec];
172 G4int counter, nt=0, npos=0, nneg=0, nzero=0;
175 const G4double b[] = { 0.70, 0.70 };
180 for( i=0; i<numMul; ++i )protmul[i] = 0.0;
181 for( i=0; i<numSec; ++i )protnorm[i] = 0.0;
183 for( npos=0; npos<(numSec/3); ++npos )
185 for( nneg=std::max(0,npos-1); nneg<=(npos+1); ++nneg )
187 for( nzero=0; nzero<numSec/3; ++nzero )
189 if( ++counter < numMul )
191 nt = npos+nneg+nzero;
192 if( nt>0 && nt<=numSec )
194 protmul[counter] =
Pmltpc(npos,nneg,nzero,nt,b[0],c);
195 protnorm[nt-1] += protmul[counter];
201 for( i=0; i<numMul; ++i )neutmul[i] = 0.0;
202 for( i=0; i<numSec; ++i )neutnorm[i] = 0.0;
204 for( npos=0; npos<numSec/3; ++npos )
206 for( nneg=npos; nneg<=(npos+2); ++nneg )
208 for( nzero=0; nzero<numSec/3; ++nzero )
210 if( ++counter < numMul )
212 nt = npos+nneg+nzero;
213 if( nt>0 && nt<=numSec )
215 neutmul[counter] =
Pmltpc(npos,nneg,nzero,nt,b[1],c);
216 neutnorm[nt-1] += neutmul[counter];
222 for( i=0; i<numSec; ++i )
224 if( protnorm[i] > 0.0 )protnorm[i] = 1.0/protnorm[i];
225 if( neutnorm[i] > 0.0 )neutnorm[i] = 1.0/neutnorm[i];
245 for( npos=0; npos<numSec/3 && ran>=excs; ++npos )
247 for( nneg=std::max(0,npos-1); nneg<=(npos+1) && ran>=excs; ++nneg )
249 for( nzero=0; nzero<numSec/3 && ran>=excs; ++nzero )
251 if( ++counter < numMul )
253 nt = npos+nneg+nzero;
254 if( nt>0 && nt<=numSec )
256 test = std::exp( std::min( expxu, std::max( expxl, -(pi/4.0)*(nt*nt)/(n*n) ) ) );
257 dum = (
pi/anpn)*nt*protmul[counter]*protnorm[nt-1]/(2.0*n*n);
258 if( std::fabs(dum) < 1.0 )
260 if( test >= 1.0e-10 )excs += dum*test;
274 npos--; nneg--; nzero--;
275 G4int ncht = std::max( 1, npos-nneg+2 );
283 incidentHasChanged =
true;
292 incidentHasChanged =
true;
294 targetHasChanged =
true;
299 targetHasChanged =
true;
306 for( npos=0; npos<numSec/3 && ran>=excs; ++npos )
308 for( nneg=npos; nneg<=(npos+2) && ran>=excs; ++nneg )
310 for( nzero=0; nzero<numSec/3 && ran>=excs; ++nzero )
312 if( ++counter < numMul )
314 nt = npos+nneg+nzero;
315 if( nt>0 && nt<=numSec )
317 test = std::exp( std::min( expxu, std::max( expxl, -(pi/4.0)*(nt*nt)/(n*n) ) ) );
318 dum = (
pi/anpn)*nt*neutmul[counter]*neutnorm[nt-1]/(2.0*n*n);
319 if( std::fabs(dum) < 1.0 )
321 if( test >= 1.0e-10 )excs += dum*test;
335 npos--; nneg--; nzero--;
336 G4int ncht = std::max( 1, npos-nneg+3 );
344 incidentHasChanged =
true;
346 targetHasChanged =
true;
355 incidentHasChanged =
true;
360 targetHasChanged =
true;
G4DLLIMPORT std::ostream G4cout
G4ParticleDefinition * GetDefinition() const
void Initialize(G4int items)
void SetStatusChange(G4HadFinalStateStatus aS)
void SetEnergyChange(G4double anEnergy)
void SetMomentumChange(const G4ThreeVector &aV)
const G4Material * GetMaterial() const
const G4ParticleDefinition * GetDefinition() const
G4double GetKineticEnergy() const
const G4LorentzVector & Get4Momentum() const
G4double GetTotalEnergy() const
G4HadFinalState theParticleChange
G4double Pmltpc(G4int np, G4int nm, G4int nz, G4int n, G4double b, G4double c)
void GetNormalizationConstant(const G4double availableEnergy, G4double &n, G4double &anpn)
void SetUpPions(const G4int np, const G4int nm, const G4int nz, G4FastVector< G4ReactionProduct, GHADLISTSIZE > &vec, G4int &vecLen)
void CalculateMomenta(G4FastVector< G4ReactionProduct, GHADLISTSIZE > &vec, G4int &vecLen, const G4HadProjectile *originalIncident, const G4DynamicParticle *originalTarget, G4ReactionProduct &modifiedOriginal, G4Nucleus &targetNucleus, G4ReactionProduct ¤tParticle, G4ReactionProduct &targetParticle, G4bool &incidentHasChanged, G4bool &targetHasChanged, G4bool quasiElastic)
void DoIsotopeCounting(const G4HadProjectile *theProjectile, const G4Nucleus &aNucleus)
void SetUpChange(G4FastVector< G4ReactionProduct, GHADLISTSIZE > &vec, G4int &vecLen, G4ReactionProduct ¤tParticle, G4ReactionProduct &targetParticle, G4bool &incidentHasChanged)
G4HadFinalState * ApplyYourself(const G4HadProjectile &aTrack, G4Nucleus &targetNucleus)
virtual void ModelDescription(std::ostream &outFile) const
static G4Lambda * Lambda()
const G4String & GetName() const
static G4Neutron * Neutron()
G4double EvaporationEffects(G4double kineticEnergy)
G4double Cinema(G4double kineticEnergy)
G4DynamicParticle * ReturnTargetParticle() const
G4double GetPDGMass() const
const G4String & GetParticleName() const
static G4PionPlus * PionPlus()
static G4Proton * Proton()
void SetMomentum(const G4double x, const G4double y, const G4double z)
G4ThreeVector GetMomentum() const
void SetSide(const G4int sid)
void SetDefinitionAndUpdateE(G4ParticleDefinition *aParticleDefinition)
void SetKineticEnergy(const G4double en)
G4ParticleDefinition * GetDefinition() const
static G4SigmaZero * SigmaZero()