source: trunk/source/geometry/magneticfield/src/G4HelixImplicitEuler.cc @ 1202

Last change on this file since 1202 was 921, checked in by garnier, 15 years ago

en test de gl2ps. Problemes de libraries

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27// $Id: G4HelixImplicitEuler.cc,v 1.6 2006/06/29 18:24:06 gunter Exp $
28// GEANT4 tag $Name: geant4-09-02-cand-01 $
29//
30//
31//  Helix Implicit Euler:
32//        x_1 = x_0 + 1/2 * ( helix(h,t_0,x_0)
33//                          + helix(h,t_0+h,x_0+helix(h,t0,x0) ) )
34//  Second order solver.
35//  Take the current derivative and add it to the current position.
36//  Take the output and its derivative. Add the mean of both derivatives
37//  to form the final output
38//
39//  W.Wander <wwc@mit.edu> 12/09/97
40//
41// -------------------------------------------------------------------------
42
43#include "G4HelixImplicitEuler.hh"
44#include "G4ThreeVector.hh"
45
46void
47G4HelixImplicitEuler::DumbStepper( const G4double  yIn[],
48                                   G4ThreeVector   Bfld,
49                                   G4double        h,
50                                   G4double        yOut[])
51{
52  const G4int nvar = 6 ;
53  G4double yTemp[6], yTemp2[6];
54  G4ThreeVector Bfld_endpoint;
55
56  G4int i;
57
58  // Step forward like in the explicit euler case
59  AdvanceHelix( yIn, Bfld, h, yTemp);
60
61  // now obtain the new field value at the new point
62  MagFieldEvaluate(yTemp, Bfld_endpoint);     
63
64  // and also advance along a helix for this field value
65  AdvanceHelix( yIn, Bfld_endpoint, h, yTemp2);
66
67  // we take the average
68  for( i = 0; i < nvar; i++ ) 
69    yOut[i] = 0.5 * ( yTemp[i] + yTemp2[i] );
70
71  // NormaliseTangentVector( yOut );           
72} 
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