1 #ifndef RKPropagatorInS_H
2 #define RKPropagatorInS_H
28 double tolerance = 5.
e-5) :
37 virtual std::pair< TrajectoryStateOnSurface, double>
40 virtual std::pair< TrajectoryStateOnSurface, double>
52 typedef std::pair<TrajectoryStateOnSurface,double>
TsosWP;
virtual FreeTrajectoryState propagate(const FreeTrajectoryState &ftsStart, const GlobalPoint &pDest) const final
virtual Propagator * clone() const
GlobalTrajectoryParameters gtpFromVolumeLocal(const CartesianStateAdaptor &state, TrackCharge charge) const
GlobalTrajectoryParameters gtpFromLocal(const Basic3DVector< double > &lpos, const Basic3DVector< double > &lmom, TrackCharge ch, const Surface &surf) const
GlobalParametersWithPath propagateParametersOnCylinder(const FreeTrajectoryState &ts, const Cylinder &cyl) const
RKLocalFieldProvider fieldProvider() const
Basic3DVector< double > rkMomentum(const GlobalVector &mom) const
std::pair< TrajectoryStateOnSurface, double > TsosWP
PropagationDirection invertDirection(PropagationDirection dir) const
virtual std::pair< TrajectoryStateOnSurface, double > propagateWithPath(const FreeTrajectoryState &, const Plane &) const
const MagVolume * theVolume
virtual std::pair< TrajectoryStateOnSurface, double > propagateWithPath(const FreeTrajectoryState &, const Surface &) const final
GlobalPoint globalPosition(const Basic3DVector< double > &pos) const
GlobalParametersWithPath propagateParametersOnPlane(const FreeTrajectoryState &ts, const Plane &plane) const
RKPropagatorInS(const MagVolume &vol, PropagationDirection dir=alongMomentum, double tolerance=5.e-5)
GlobalVector globalMomentum(const Basic3DVector< double > &mom) const
Basic3DVector< double > rkPosition(const GlobalPoint &pos) const
virtual const MagneticField * magneticField() const