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Geant4/geometry/magneticfield/include/G4HelixImplicitEuler.hh

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Diff markup

Differences between /geometry/magneticfield/include/G4HelixImplicitEuler.hh (Version 11.3.0) and /geometry/magneticfield/include/G4HelixImplicitEuler.hh (Version 11.0.p1)


  1 //                                                  1 //
  2 // *******************************************      2 // ********************************************************************
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  8 // * LICENSE and available at  http://cern.ch/      8 // * LICENSE and available at  http://cern.ch/geant4/license .  These *
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 16 // * for the full disclaimer and the limitatio     16 // * for the full disclaimer and the limitation of liability.         *
 17 // *                                               17 // *                                                                  *
 18 // * This  code  implementation is the result      18 // * This  code  implementation is the result of  the  scientific and *
 19 // * technical work of the GEANT4 collaboratio     19 // * technical work of the GEANT4 collaboration.                      *
 20 // * By using,  copying,  modifying or  distri     20 // * By using,  copying,  modifying or  distributing the software (or *
 21 // * any work based  on the software)  you  ag     21 // * any work based  on the software)  you  agree  to acknowledge its *
 22 // * use  in  resulting  scientific  publicati     22 // * use  in  resulting  scientific  publications,  and indicate your *
 23 // * acceptance of all terms of the Geant4 Sof     23 // * acceptance of all terms of the Geant4 Software license.          *
 24 // *******************************************     24 // ********************************************************************
 25 //                                                 25 //
 26 // G4HelixImplicitEuler                            26 // G4HelixImplicitEuler
 27 //                                                 27 //
 28 // Class description:                              28 // Class description:
 29 //                                                 29 //
 30 //  Helix Implicit Euler stepper for magnetic      30 //  Helix Implicit Euler stepper for magnetic field:
 31 //        x_1 = x_0 + 1/2 * ( helix(h,t_0,x_0)     31 //        x_1 = x_0 + 1/2 * ( helix(h,t_0,x_0)
 32 //                          + helix(h,t_0+h,x_     32 //                          + helix(h,t_0+h,x_0+helix(h,t0,x0) ) )
 33 //  Second order solver.                           33 //  Second order solver.
 34 //  Take the current derivative and add it to      34 //  Take the current derivative and add it to the current position.
 35 //  Take the output and its derivative. Add th     35 //  Take the output and its derivative. Add the mean of both derivatives
 36 //  to form the final output.                      36 //  to form the final output.
 37                                                    37 
 38 // Author: W.Wander <wwc@mit.edu>, 03/11/1998      38 // Author: W.Wander <wwc@mit.edu>, 03/11/1998
 39 // -------------------------------------------     39 // -------------------------------------------------------------------
 40 #ifndef G4HELIXIMPLICITEULER_HH                    40 #ifndef G4HELIXIMPLICITEULER_HH
 41 #define G4HELIXIMPLICITEULER_HH                    41 #define G4HELIXIMPLICITEULER_HH
 42                                                    42 
 43 #include "G4MagHelicalStepper.hh"                  43 #include "G4MagHelicalStepper.hh"
 44                                                    44 
 45 class G4HelixImplicitEuler : public G4MagHelic     45 class G4HelixImplicitEuler : public G4MagHelicalStepper
 46 {                                                  46 {
 47   public:                                      <<  47 
                                                   >>  48   public:  // with description
 48                                                    49 
 49     G4HelixImplicitEuler(G4Mag_EqRhs *EqRhs);      50     G4HelixImplicitEuler(G4Mag_EqRhs *EqRhs);
 50    ~G4HelixImplicitEuler() override;           <<  51     ~G4HelixImplicitEuler();
 51                                                    52   
 52     void DumbStepper( const G4double y[],          53     void DumbStepper( const G4double y[],
 53                             G4ThreeVector Bfld     54                             G4ThreeVector Bfld,
 54                             G4double      h,       55                             G4double      h,
 55                             G4double      yout <<  56                             G4double      yout[] );
 56                                                    57   
 57     inline G4int IntegratorOrder() const overr <<  58   public:  // without description
                                                   >>  59 
                                                   >>  60     inline G4int IntegratorOrder() const { return 2; }
 58 };                                                 61 };
 59                                                    62 
 60 #endif                                             63 #endif
 61                                                    64