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G4UniformMagField.cc
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27 // $Id: G4UniformMagField.cc 69786 2013-05-15 09:38:51Z gcosmo $
28 //
29 //
30 // Class for creation of uniform Magnetic Field
31 //
32 // 30.1.97 V.Grichine
33 //
34 // -------------------------------------------------------------------
35 
36 #include "G4UniformMagField.hh"
37 #include "G4PhysicalConstants.hh"
38 
40 {
41  fFieldComponents[0] = FieldVector.x();
42  fFieldComponents[1] = FieldVector.y();
43  fFieldComponents[2] = FieldVector.z();
44 }
45 
46 void
48 {
49  fFieldComponents[0] = newFieldVector.x();
50  fFieldComponents[1] = newFieldVector.y();
51  fFieldComponents[2] = newFieldVector.z();
52 }
53 
55  G4double vTheta,
56  G4double vPhi )
57 {
58  if ( (vField<0) || (vTheta<0) || (vTheta>pi) || (vPhi<0) || (vPhi>twopi) )
59  {
60  G4Exception("G4UniformMagField::G4UniformMagField()",
61  "GeomField0002", FatalException, "Invalid parameters.") ;
62  }
63  fFieldComponents[0] = vField*std::sin(vTheta)*std::cos(vPhi) ;
64  fFieldComponents[1] = vField*std::sin(vTheta)*std::sin(vPhi) ;
65  fFieldComponents[2] = vField*std::cos(vTheta) ;
66 }
67 
69 {
70 }
71 
73  : G4MagneticField(p)
74 {
75  for (G4int i=0; i<3; i++)
76  fFieldComponents[i] = p.fFieldComponents[i];
77 }
78 
80 {
81  if (&p == this) return *this;
82  for (G4int i=0; i<3; i++)
83  fFieldComponents[i] = p.fFieldComponents[i];
84  return *this;
85 }
86 
87 // ------------------------------------------------------------------------
88 
90  G4double *B ) const
91 {
92  B[0]= fFieldComponents[0] ;
93  B[1]= fFieldComponents[1] ;
94  B[2]= fFieldComponents[2] ;
95 }
96 
98 {
99  G4ThreeVector B(fFieldComponents[0],
100  fFieldComponents[1],
101  fFieldComponents[2]);
102  return B;
103 }