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/* |
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* TrkDedxHCut.cpp |
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* |
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* Created on: 15-mar-2010 |
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* Author: S. Ricciarini |
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*/ |
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/*! @file TrkDedxHCut.cpp The TrkDedxHCut class implementation file */ |
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#include "TrkDedxHCut.h" |
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const Double_t TrkDedxHCut::_xLow[] = { 0.126414, 0.140142, 0.152714, 0.165854, 0.178357, 0.194244, 0.211669, 0.242859, |
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0.264646, 0.293385, 0.314258, 0.360565, 0.392911, 0.450807, 0.508423, 0.603735, 0.680897, 0.754838, 0.851312, |
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1.00032, 1.36201, 1.37, 1000. }; // _nLow=23 elements |
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const Double_t TrkDedxHCut::_yLow[] = { 18.9221, 16.0752, 14.2214, 12.6324, 11.2421, 9.71928, 8.1965, 6.93856, 6.14407, |
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5.15095, 4.6875, 3.8268, 3.49576, 2.89989, 2.56886, 2.17161, 1.90678, 1.70816, 1.50953, 1.27754, 0.715042, 0, 0 }; // _nLow=23 elements |
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Int_t TrkDedxHCut::Check(PamLevel2 *event) { |
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// TrkTrack *trkTrack = event->GetTrack(0)->GetTrkTrack(); |
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if(event->GetNTracks(_trkAlg)==0)return 0; |
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ExtTrack *trkTrack = event->GetTrack(0,_trkAlg)->GetExtTrack(); |
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Float_t rigMod = trkTrack->GetRigidity(); |
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Float_t dedx = trkTrack->GetDEDX(); |
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if (rigMod < 0.126414) |
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return 0; // a proton below 126.414 MV is rejected |
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// lower limit taken from N. De Simone (interpolation of _xLow) |
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for (Int_t i = 0; i < _nLow - 1; i++) { |
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if (_xLow[i] <= rigMod && rigMod < _xLow[i + 1]) { |
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Double_t slope = (_yLow[i + 1] - _yLow[i]) / (_xLow[i + 1] - _xLow[i]); |
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Double_t y = _yLow[i] + slope * (rigMod - _xLow[i]); |
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if (dedx < y) |
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return 0; |
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} |
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} |
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// higher limit taken from N. Mori lower limit for Helium |
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// Compute dE/dx for X and Y separately |
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Float_t totReleaseX = 0.; |
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Float_t totReleaseY = 0.; |
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Int_t nX = 0, nY = 0; |
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Float_t dEdxView = 0; |
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for (Int_t ip = 0; ip < 6; ip++) { |
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// X view |
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dEdxView = trkTrack->GetDEDX(ip, 0); |
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if (dEdxView > 0 && trkTrack->XGood(ip)) { |
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totReleaseX += dEdxView; |
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nX++; |
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} |
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// Y view |
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dEdxView = trkTrack->GetDEDX(ip, 1); |
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if (dEdxView > 0 && trkTrack->YGood(ip)) { |
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totReleaseY += dEdxView; |
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nY++; |
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} |
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} |
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Float_t dEdxX = totReleaseX / nX; // nX assumed > 0 |
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Float_t dEdxY = totReleaseY / nY; // nY assumed > 0 |
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Float_t denHigh = pow(rigMod, 1.8); // The power of the denominator is the same for X and Y (with current calibration) |
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if (dEdxX > 3.7 + 4.6 / denHigh) { |
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return 0; |
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} |
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if (dEdxY > 3.3 + 4.9 / denHigh) { |
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return 0; |
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} |
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return CUTOK; |
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} |