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// |
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// Example to integrate all detector info by means of the PamLevel2 class |
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// |
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// An object of this class has access to all the public members of all the detector classes. |
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// Some local methods allows to sort tracks and solve the tracker y-view ambiguity (reject track images) |
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// |
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void example1(TString file){ |
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// |
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// histos |
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// |
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TH1F* qtot = new TH1F("qtot","Total energy in the calorimeter",1000,0.,2000.); |
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TH1F* npaddle = new TH1F("npaddle","Total number of hit ToF paddles",16,-0.5,15.5); |
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TH1F* ntrack = new TH1F("ntr","Number of fitted tracks",6,-0.5,5.5); |
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// |
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TH1F* rig = new TH1F("rig","Particle rigidity",100,0.,100.); |
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TH1F* resxs = new TH1F("resxs","Spatial residual (X) on the 1^ calo plane (sorted tracks)",100,-10.,10.); |
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TH1F* resys = new TH1F("resys","Spatial residual (Y) on the 1^ calo plane (sorted tracks)",100,-10.,10.); |
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TH1F* resxi = new TH1F("resxi","Spatial residual (X) on the 1^ calo plane (image tracks)",100,-10.,10.); |
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TH1F* resyi = new TH1F("resyi","Spatial residual (Y) on the 1^ calo plane (image tracks)",100,-10.,10.); |
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// |
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PamLevel2* pam_event = new PamLevel2(); // << create pamela event |
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// |
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TFile f(file); |
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// |
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TTree *T = pam_event->LoadPamTrees(&f); // << load Pamela trees from file f |
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Int_t nevent = T->GetEntries(); |
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// |
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cout << endl<<" Start loop over events "; |
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for (Int_t i=0; i<nevent;i++){ |
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// |
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T->GetEntry(i); |
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//================================================================================ |
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// some general quantities |
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//================================================================================ |
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// tracker |
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ntrack->Fill( pam_event->GetNTracks()); |
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// calorimeter |
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qtot->Fill(pam_event->qtot); |
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// ToF |
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Int_t npa=0; |
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for(Int_t ipa=0; ipa<6; ipa++)npa = npa + pam_event->GetNHitPaddles(ipa); |
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npaddle->Fill(npa); |
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//================================================================================ |
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// track related variables |
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//================================================================================ |
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for(Int_t it=0; it<pam_event->GetNTracks(); it++){ // << loop over the "physical" tracks (no track images) |
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// |
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// << get the it-th physical pamela track |
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// << PamTrack combines the tracker, calorimeter and ToF track-related variables |
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// << (in case of image, choose the best track by means of calorimeter and ToF data) |
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// |
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PamTrack *track = pam_event->GetTrack(it); |
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// |
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// << if the track fit is good, fill some histos |
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// |
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if( track->chi2 > 0 && track->chi2 < 100){ |
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// |
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// << spatial residuals on the first calorimeter plane for the sorted track |
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// |
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Float_t rxs = track->tbar[0][0] - pam_event->cbar[0][0]; |
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Float_t rys = track->tbar[0][1] - pam_event->cbar[0][1]; |
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resxs->Fill(rxs); |
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resys->Fill(rys); |
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// |
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rig->Fill( track->GetRigidity() ); |
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// |
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// << spatial residuals on the first calorimeter plane for the image track |
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// |
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if(track->HasImage()){ // << if the sorted track has an image... |
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// |
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PamTrack *image = pam_event->GetTrackImage(it); // << ...get the image track |
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// |
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Float_t rxi = image->tbar[0][0] - pam_event->cbar[0][0]; |
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Float_t ryi = image->tbar[0][1] - pam_event->cbar[0][1]; |
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resxi->Fill(rxi); |
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resyi->Fill(ryi); |
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}; |
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}; |
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}; // end loop over tracks |
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//================================================================================ |
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|
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}; // end loop over the events |
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cout << endl << endl << " Done "<< endl<<endl; |
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// |
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// close file |
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// |
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f.Close(); |
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|
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}; |