Geant4 11.2.2
Toolkit for the simulation of the passage of particles through matter
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G4LatticePhysical.hh
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25
26/// \file materials/include/G4LatticePhysical.hh
27/// \brief Definition of the G4LatticePhysical class
28//
29// 20131114 Add verbosity for diagnostic output
30// 20131116 Replace G4Transform3D with G4RotationMatrix
31
32#ifndef G4LatticePhysical_h
33#define G4LatticePhysical_h 1
34
35#include "G4LatticeLogical.hh"
36#include "G4RotationMatrix.hh"
37#include "G4ThreeVector.hh"
38
40{
41 public:
42 G4LatticePhysical(const G4LatticeLogical* Lat = nullptr,
43 const G4RotationMatrix* Rot = nullptr); // Use FRAME rotation
44 virtual ~G4LatticePhysical() = default;
45
46 void SetVerboseLevel(G4int vb) { verboseLevel = vb; }
47
48 // NOTE: Pass by value to allow in-situ rotations
51
52 void SetLatticeLogical(const G4LatticeLogical* Lat) { fLattice = Lat; }
53 void SetPhysicalOrientation(const G4RotationMatrix* Rot); // FRAME rotation
56
57 public:
58 const G4LatticeLogical* GetLattice() const { return fLattice; }
59
61 G4double GetAnhDecConstant() const { return fLattice->GetAnhDecConstant(); }
62 G4double GetLDOS() const { return fLattice->GetLDOS(); }
63 G4double GetSTDOS() const { return fLattice->GetSTDOS(); }
64 G4double GetFTDOS() const { return fLattice->GetFTDOS(); }
65 G4double GetBeta() const { return fLattice->GetBeta(); }
66 G4double GetGamma() const { return fLattice->GetGamma(); }
67 G4double GetLambda() const { return fLattice->GetLambda(); }
68 G4double GetMu() const { return fLattice->GetMu(); }
69
70 // Apply orientation transforms to specified vector
73
74 private:
75 G4int verboseLevel{0}; // Enable diagnostic output
76
77 G4double fTheta{0}, fPhi{0}; // Lattice orientation within object
78 const G4LatticeLogical* fLattice; // Underlying lattice parameters
79
80 G4RotationMatrix fLocalToGlobal;
81 G4RotationMatrix fGlobalToLocal;
82};
83
84#endif
Definition of the G4LatticeLogical class.
double G4double
Definition G4Types.hh:83
int G4int
Definition G4Types.hh:85
G4double GetLDOS() const
G4double GetMu() const
G4double GetLambda() const
G4double GetGamma() const
G4double GetBeta() const
G4double GetScatteringConstant() const
G4double GetSTDOS() const
G4double GetAnhDecConstant() const
G4double GetFTDOS() const
void SetLatticeOrientation(G4double, G4double)
G4double GetFTDOS() const
void SetPhysicalOrientation(const G4RotationMatrix *Rot)
G4ThreeVector RotateToLocal(const G4ThreeVector &dir) const
void SetVerboseLevel(G4int vb)
G4double GetAnhDecConstant() const
G4double GetGamma() const
void SetLatticeLogical(const G4LatticeLogical *Lat)
G4double GetScatteringConstant() const
G4double GetMu() const
G4double GetLDOS() const
G4ThreeVector RotateToGlobal(const G4ThreeVector &dir) const
const G4LatticeLogical * GetLattice() const
virtual ~G4LatticePhysical()=default
G4double MapKtoV(G4int, G4ThreeVector) const
G4ThreeVector MapKtoVDir(G4int, G4ThreeVector) const
G4double GetSTDOS() const
void SetMillerOrientation(G4int, G4int, G4int)
G4double GetBeta() const
G4double GetLambda() const
G4LatticePhysical(const G4LatticeLogical *Lat=nullptr, const G4RotationMatrix *Rot=nullptr)