/[PAMELA software]/calo/flight/CaloNuclei/inc/CaloNuclei.h
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Contents of /calo/flight/CaloNuclei/inc/CaloNuclei.h

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Revision 1.3 - (show annotations) (download)
Wed Apr 4 11:31:26 2007 UTC (17 years, 8 months ago) by mocchiut
Branch: MAIN
Changes since 1.2: +15 -13 lines
File MIME type: text/plain
Small changes in name of methods, added Process(track) method and example.cpp file

1
2
3 /**
4 * \file CaloNuclei.h
5 * \author Emiliano Mocchiutti
6 */
7 #ifndef calonuclei_h
8 #define calonuclei_h
9
10 #include <PamLevel2.h>
11
12 #include <TTree.h>
13 #include <TFriendElement.h>
14 #include <TChain.h>
15 #include <TFile.h>
16 #include <TList.h>
17 #include <TKey.h>
18 #include <TSystemFile.h>
19 #include <TSystemDirectory.h>
20 #include <TSQLServer.h>
21
22 #include <iostream>
23
24 using namespace std;
25
26 /**
27 *
28 * Class to store and calculate variables useful for nuclei analysis
29 */
30 class CaloNuclei : public TObject {
31
32 private:
33 //
34 PamLevel2 *L2;
35 //
36 // needed to avoid reprocessing the same event over and over to obtain the variables
37 //
38 UInt_t OBT;
39 UInt_t PKT;
40 UInt_t atime;
41 Int_t tr;
42 //
43 Int_t interplane; ///< Number of available dE/dx measurements before interaction or exit from the calo (interaction plane)
44 Int_t N; ///< Number of dE/dx measurements to be used to calculate qpremeanN, default N = 5
45 Int_t R; ///< Number of strip to be used around the trajectory to calculate qpremeanN, default R = 3
46 Float_t preq; ///< Energy release (MIP) up to the interaction plane (included)
47 Float_t postq; ///< Energy release (MIP) from the interaction plane (excluded) up to the last plane
48 Float_t dedx1; ///< Energy release (MIP) along the track on the first Silicon detector (Y EVEN).
49 Float_t dedx3; ///< Energy release (MIP) along the track on the first three Silicon detectors (Y EVEN, X EVEN, Y ODD).
50 Float_t qpremean; ///< Truncated mean (MIP) along the track up to the interaction plane preq using three points
51 Float_t qpremeanN; ///< Truncated mean (MIP) along the track up to the interaction plane preq using N points
52 Float_t ethr; ///< Threshold (MIP) needed to find the interaction plane
53 Bool_t multhit; ///< True if the interaction plane has been determined by multiple hit counting
54 Bool_t gap; ///< True if determining the interaction plane a big (>5 planes) gap has been found between a point and another along the track
55 //
56
57 public:
58 //
59 //
60 Int_t Get_interplane(){ Process(); return interplane;}; ///< Number of available dE/dx measurements before interaction or exit from the calo (interaction plane)
61 Int_t Get_N(){ return N;}; ///< Number of available dE/dx measurements before interaction or exit from the calo (interaction plane)
62 Int_t Get_R(){ return R;}; ///< Number of strip to be used around the trajectory to calculate qpremeanN, default R = 3
63 Float_t Get_preq(){ Process(); return preq;}; ///< Energy release (MIP) up to the interaction plane (included)
64 Float_t Get_postq(){ Process(); return postq;}; ///< Energy release (MIP) from the interaction plane (excluded) up to the last plane
65 Float_t Get_dEdx1(){ Process(); return dedx1;}; ///< Energy release (MIP) along the track on the first Silicon detector (Y EVEN).
66 Float_t Get_dEdx3(){ Process(); return dedx3;}; ///< Energy release (MIP) along the track on the first three Silicon detectors (Y EVEN, X EVEN, Y ODD).
67 Float_t Get_qpremean(){ Process(); return qpremean;}; ///< Truncated mean (MIP) along the track up to the interaction plane preq using three points
68 Float_t Get_qpremeanN(){ Process(); return qpremeanN;}; ///< Truncated mean (MIP) along the track up to the interaction plane preq using N points
69 Float_t Get_ethr(){ Process(); return ethr;}; ///< Threshold (MIP) needed to find the interaction plane
70 Bool_t IsMulthit(){ Process(); return multhit;}; ///< True if the interaction plane has been determined by multiple hit counting
71 //
72 void Set_N(Int_t n){ N=n;};
73 void Set_R(Int_t r){ R=r;};
74 //
75 CaloNuclei();
76 CaloNuclei(PamLevel2 *L2);
77 ~CaloNuclei(){ Delete(); };
78 //
79 void Clear();
80 void Clear(Option_t *option){Clear();};
81 void Delete();
82 //
83 void Process(); ///< Process data for track number 0
84 void Process(Int_t ntr); ///< Process data for track number ntr
85 void Print();
86 //
87 ClassDef(CaloNuclei,1);
88 };
89
90 #endif
91

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