Geant4 11.3.0
Toolkit for the simulation of the passage of particles through matter
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G4QuadrupoleMagField.cc
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25//
26// G4QuadrupoleMagField implementation
27//
28// 03.02.1997, V.Grichine - Created
29// 11.05.2012, B.Riese - Allow displaced origin and rotation
30// -------------------------------------------------------------------
31
33#include "G4RotationMatrix.hh"
34
35namespace
36{
37 G4RotationMatrix IdentityMatrix;
38}
39
41{
42 fGradient = pGradient;
43 fpMatrix = &IdentityMatrix;
44}
45
46// -------------------------------------------------------------------
47
49 const G4ThreeVector& pOrigin,
50 G4RotationMatrix* pMatrix)
51{
52 fGradient = pGradient ;
53 fOrigin = pOrigin ;
54 fpMatrix = pMatrix ;
55}
56
57// -------------------------------------------------------------------
58
60{
61 return new G4QuadrupoleMagField(fGradient, fOrigin, fpMatrix);
62}
63
64// -------------------------------------------------------------------
65
67
68// -------------------------------------------------------------------
69
71 G4double B[] ) const // [3]
72{
73 // with displaced origin and rotation
74
75 G4ThreeVector r_global = G4ThreeVector(y[0] - fOrigin.x(),
76 y[1] - fOrigin.y(),
77 y[2] - fOrigin.z());
78
79 const G4ThreeVector r_local = (*fpMatrix) * r_global;
80 const G4ThreeVector B_local( fGradient * r_local.y(),
81 fGradient * r_local.x(), 0);
82 const G4ThreeVector B_global = fpMatrix->inverse() * B_local;
83
84 B[0] = B_global.x();
85 B[1] = B_global.y();
86 B[2] = B_global.z();
87}
CLHEP::HepRotation G4RotationMatrix
CLHEP::Hep3Vector G4ThreeVector
double G4double
Definition G4Types.hh:83
double z() const
double x() const
double y() const
G4Field(G4bool gravityOn=false)
Definition G4Field.cc:33
G4QuadrupoleMagField(G4double pGradient)
~G4QuadrupoleMagField() override
void GetFieldValue(const G4double yTrack[], G4double B[]) const override
G4Field * Clone() const override