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#include <algorithm> // EMILIANO |
#include <algorithm> // EMILIANO |
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#include <OrbitalInfoStruct.h> |
#include <OrbitalInfoStruct.h> |
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#include <TClonesArray.h> |
#include <TClonesArray.h> |
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#include <TMatrixD.h> |
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class OrbitalInfoTrkVar : public TObject { |
class OrbitalInfoTrkVar : public TObject { |
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private: |
private: |
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// |
// |
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Int_t trkseqno; // tof sequ. number: -1=ToF standalone, 0=first Tracker track, ... |
Int_t trkseqno; // tof sequ. number: -1=ToF standalone, 0=first Tracker track, ... |
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// |
// |
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Float_t pitch; |
Float_t pitch; ///< Pitch angle |
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// |
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TMatrixD Eij; ///< vector of incoming particle respect to cartesian geographic coordinates |
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TMatrixD Sij; ///< vector of incoming particle respect to flight coordinates |
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// |
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Float_t cutoff; ///< Calculated cutoff for the incoming particle taking into account particle direction |
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// |
// |
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OrbitalInfoTrkVar(); |
OrbitalInfoTrkVar(); |
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OrbitalInfoTrkVar* GetOrbitalInfoTrkVar(){return this;}; |
OrbitalInfoTrkVar* GetOrbitalInfoTrkVar(){return this;}; |
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// |
// |
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void Clear(Option_t *t=""); |
void Clear(Option_t *t=""); |
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void Delete(Option_t *t=""); //ELENA |
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// |
// |
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ClassDef(OrbitalInfoTrkVar, 1); |
ClassDef(OrbitalInfoTrkVar, 2); |
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// |
// |
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}; |
}; |
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Float_t L; ///< McIlwain's L shell (in earth radii) |
Float_t L; ///< McIlwain's L shell (in earth radii) |
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// Dipolar magnetic coordinates (not used). |
/* // Dipolar magnetic coordinates (not used). */ |
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Float_t londip; ///< degrees from -180 to 180 |
/* Float_t londip; ///< degrees from -180 to 180 */ |
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Float_t latdip; ///< degrees from -90 to 90 |
/* Float_t latdip; ///< degrees from -90 to 90 */ |
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Float_t altdip; ///< meters |
/* Float_t altdip; ///< meters */ |
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// Corrected magnetic coordinates (not used). |
/* // Corrected magnetic coordinates (not used). */ |
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Float_t loncgm; ///< degrees from -180 to 180 |
/* Float_t loncgm; ///< degrees from -180 to 180 */ |
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Float_t latcgm; ///< degrees from -90 to 90 |
/* Float_t latcgm; ///< degrees from -90 to 90 */ |
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Float_t altcgm; ///< meters |
/* Float_t altcgm; ///< meters */ |
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// Corrected B min magnetic coordinates (not used). |
/* // Corrected B min magnetic coordinates (not used). */ |
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Float_t loncbm; ///< degrees from -180 to 180 |
/* Float_t loncbm; ///< degrees from -180 to 180 */ |
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Float_t latcbm; ///< degrees from -90 to 90 |
/* Float_t latcbm; ///< degrees from -90 to 90 */ |
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Float_t altcbm; ///< meters |
/* Float_t altcbm; ///< meters */ |
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Float_t cutoff[17]; |
// Float_t cutoff[17]; |
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Float_t cutoffsvl; |
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// Quaternions |
// Quaternions |
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Float_t q0; ///< Quaternion 0 |
Float_t q0; ///< Quaternion 0 |
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Float_t etha; ///< Euler angle etha in the velocity reference frame (roll) |
Float_t etha; ///< Euler angle etha in the velocity reference frame (roll) |
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// Pitch angles |
// Pitch angles |
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Float_t pamzenitangle; |
// Float_t pamzenitangle; |
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Float_t pamBangle; |
// Float_t pamBangle; |
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// |
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TMatrixD Iij; ///< Angle between PAMELA Z direction and cartesian geographic coordinates |
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/** |
/** |
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* The variable mode means a character time distant between two quaternions, inside which stay every events |
* The variable mode means a character time distant between two quaternions, inside which stay every events |
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\return Returns the Stormer vertical cutoff using L shell: |
\return Returns the Stormer vertical cutoff using L shell: |
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14.9/L^2 (GV/c). |
14.9/L^2 (GV/c). |
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*/ |
*/ |
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Float_t GetCutoffSVL() { return cutoff[0]; }; |
Float_t GetCutoffSVL() { return cutoffsvl; }; |
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void SetFromLevel2Struct(cOrbitalInfo *l2); |
void SetFromLevel2Struct(cOrbitalInfo *l2); |
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void GetLevel2Struct(cOrbitalInfo *l2) const; |
void GetLevel2Struct(cOrbitalInfo *l2) const; |
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void Clear(Option_t *t=""); // emiliano |
void Clear(Option_t *t=""); // emiliano |
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// |
// |
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ClassDef(OrbitalInfo, 6); |
ClassDef(OrbitalInfo, 7); |
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}; |
}; |
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#endif |
#endif |