76   buildAsymmetryTable(true),
 
   77   useAsymmetryTable(true),
 
  120   G4cout << 
" Total cross sections has a good parametrisation" 
  121          << 
" from 10 KeV to (100/Z) GeV"  
  130   if(ss == 
"Klein-Nishina")     { 
mType = 0; }
 
  131   if(ss == 
"Polarized-Compton") { 
mType = 10; }
 
  161     if (!VolumeIsPolarized || mfp == 
DBL_MAX) 
return mfp;
 
  166       G4cout << 
" Polarization " << GammaPolarization  << 
G4endl;
 
  167       G4cout << 
" MaterialPol. " << ElectronPolarization  << 
G4endl;
 
  178       asymmetry = aVector->
Value(GammaEnergy);
 
  180       G4cout << 
" MaterialIndex     " << midx << 
" is out of range \n";
 
  189     G4double pol=ElectronPolarization*GammaDirection0;
 
  191     G4double polProduct = GammaPolarization.
p3() * pol;
 
  192     mfp *= 1. / ( 1. + polProduct * asymmetry );
 
  230      if (!VolumeIsPolarized || mfp == 
DBL_MAX) 
return mfp;
 
  235        G4cout << 
" Polarization " << GammaPolarization  << 
G4endl;
 
  236        G4cout << 
" MaterialPol. " << ElectronPolarization  << 
G4endl;
 
  247        asymmetry = aVector->
Value(GammaEnergy);
 
  249        G4cout << 
" MaterialIndex     " << midx << 
" is out of range \n";
 
  258      G4double pol=ElectronPolarization*GammaDirection0;
 
  260      G4double polProduct = GammaPolarization.
p3() * pol;
 
  261      mfp *= 1. / ( 1. + polProduct * asymmetry );
 
  283     if(masterProcess && masterProcess != 
this) { isMaster = 
false; }
 
  302     if(masterProcess && masterProcess != 
this) { isMaster = 
false; }
 
  323   for(
size_t i=0; i<numOfCouples; ++i) {
 
  337       for (
G4int j = 0; j <= nbins; ++j ) {
 
  379     lAsymmetry = sigma2/sigma0-1.;
 
G4double condition(const G4ErrorSymMatrix &m)
 
const G4VProcess * GetMasterProcess() const 
 
const G4ThreeVector & GetPolarization() const 
 
static void SetPhysicsVector(G4PhysicsTable *physTable, size_t idx, G4PhysicsVector *vec)
 
G4double MaxKinEnergy() const 
 
G4double GetKineticEnergy() const 
 
CLHEP::Hep3Vector G4ThreeVector
 
const G4DynamicParticle * GetDynamicParticle() const 
 
void SetBuildTableFlag(G4bool val)
 
void BuildAsymmetryTable(const G4ParticleDefinition &part)
 
G4VEmModel * EmModel(G4int index=1) const 
 
G4bool buildAsymmetryTable
 
static G4PolarizationManager * GetInstance()
 
virtual void PreparePhysicsTable(const G4ParticleDefinition &)
 
void SetSplineFlag(G4bool val)
 
G4double MaxKinEnergy() const 
 
G4PolarizedComptonModel * emModel
 
void BuildPhysicsTable(const G4ParticleDefinition &)
 
G4double PostStepGetPhysicalInteractionLength(const G4Track &track, G4double previousStepSize, G4ForceCondition *condition)
 
void SetStartFromNullFlag(G4bool val)
 
static G4PhysicsTable * PreparePhysicsTable(G4PhysicsTable *physTable)
 
G4int LambdaBinning() const 
 
virtual void BuildPhysicsTable(const G4ParticleDefinition &)
 
void SetHighEnergyLimit(G4double)
 
void SetMinKinEnergyPrim(G4double e)
 
virtual G4double GetMeanFreePath(const G4Track &aTrack, G4double previousStepSize, G4ForceCondition *condition)
 
void SetEmModel(G4VEmModel *, G4int index=1)
 
size_t CurrentMaterialCutsCoupleIndex() const 
 
G4GLOB_DLL std::ostream G4cout
 
size_t GetTableSize() const 
 
const G4String & GetName() const 
 
virtual G4double PostStepGetPhysicalInteractionLength(const G4Track &track, G4double previousStepSize, G4ForceCondition *condition)
 
const G4ThreeVector & GetMomentumDirection() const 
 
G4double CrossSection(const G4MaterialCutsCouple *, const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy=0.0, G4double maxEnergy=DBL_MAX)
 
void PutValue(size_t index, G4double theValue)
 
G4double GetMeanFreePath(const G4Track &track, G4double previousStepSize, G4ForceCondition *condition)
 
void SetProcessSubType(G4int)
 
G4double MinKinEnergy() const 
 
void PreparePhysicsTable(const G4ParticleDefinition &)
 
G4double Energy(size_t index) const 
 
G4double Value(G4double theEnergy, size_t &lastidx) const 
 
G4Material * GetMaterial() const 
 
static G4ProductionCutsTable * GetProductionCutsTable()
 
G4PolarizedCompton(const G4String &processName="pol-compt", G4ProcessType type=fElectromagnetic)
 
G4double ComputeAsymmetry(G4double energy, const G4MaterialCutsCouple *couple, const G4ParticleDefinition &particle, G4double cut, G4double &tAsymmetry)
 
G4LogicalVolume * GetLogicalVolume() const 
 
const G4MaterialCutsCouple * GetMaterialCutsCouple(G4int i) const 
 
void SetBeamPolarization(const G4ThreeVector &pBeam)
 
void AddEmModel(G4int, G4VEmModel *, const G4Region *region=0)
 
G4double energy(const ThreeVector &p, const G4double m)
 
void SetSecondaryParticle(const G4ParticleDefinition *p)
 
static G4EmParameters * Instance()
 
bool IsPolarized(G4LogicalVolume *lVol) const 
 
G4VPhysicalVolume * GetVolume() const 
 
virtual void InitialiseProcess(const G4ParticleDefinition *)
 
static G4Electron * Electron()
 
virtual ~G4PolarizedCompton()
 
const G4String & GetName() const 
 
G4bool GetFlag(size_t i) const 
 
static G4PhysicsTable * theAsymmetryTable
 
void SetLowEnergyLimit(G4double)
 
G4ThreeVector G4ParticleMomentum
 
G4double MinKinEnergy() const 
 
const G4ThreeVector & GetVolumePolarization(G4LogicalVolume *lVol) const 
 
void SetTargetPolarization(const G4ThreeVector &pTarget)
 
void SetModel(const G4String &name)