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/* | 
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 * CaloGeomCut.cpp | 
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 * | 
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 *  Created on: 19-mar-2009 | 
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 *      Author: Sergio Ricciarini, Nicola Mori | 
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 */ | 
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 | 
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/*! @file CaloGeomCut.cpp The CaloCrossCut class implementation file */ | 
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#ifndef NO_CALOAXIS | 
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#include "CaloGeomCut.h" | 
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const Int_t CaloGeomCut::_nPoint = TrkParams::nGF + 1; | 
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const Float_t CaloGeomCut::_zCaloTop = -26.181; | 
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 | 
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CaloGeomCut::CaloGeomCut(const char *cutName, CaloAxis *xCaloAxis, CaloAxis *yCaloAxis, UInt_t iMethod, | 
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    Float_t xTolCaloTrack, Float_t yTolCaloTrack, Float_t mass, Float_t zeta, Float_t resMax, Float_t qualCut, Float_t chi2Cut) : | 
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    PamCut(cutName), _xCaloAxis(xCaloAxis), _yCaloAxis(yCaloAxis), _iMethod(iMethod), _xTolCaloTrack(xTolCaloTrack), _yTolCaloTrack( | 
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        yTolCaloTrack), _mass(mass),  _zeta(zeta), _resMax(resMax), _qualCut(qualCut), _chi2Cut(chi2Cut), _traj(NULL), _zIn(_nPoint) { | 
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 | 
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  if (_iMethod == 1) { | 
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    _traj = (Trajectory*) new Trajectory(_nPoint); | 
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 | 
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    for (Int_t igf = 0; igf < TrkParams::nGF; igf++) { | 
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      _zIn[igf] = TrkParams::zGF[igf]; | 
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    } | 
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    _zIn[TrkParams::nGF] = _zCaloTop; | 
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 | 
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  } | 
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} | 
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 | 
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/*! @brief Destructor. */ | 
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CaloGeomCut::~CaloGeomCut() { | 
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  delete _traj; | 
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} | 
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 | 
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int CaloGeomCut::Check(PamLevel2 *event) { | 
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 | 
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  Float_t xCaloTrack = 0.; | 
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  Float_t yCaloTrack = 0.; | 
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 | 
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  Double_t tanx, tany, beta; | 
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  Float_t alCaloTop[5]; // MUST be Float_t | 
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 | 
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  tanx = _xCaloAxis->par[1]; | 
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  tany = _yCaloAxis->par[1]; | 
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 | 
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  if (_iMethod == 0) { | 
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  } | 
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  else if (_iMethod == 1) { // curved track in the Pamela acceptance (back-propagated starting from the straight track in the calorimeter, evaluated at the top of calorimeter, which is of course better than at higher z coordinates) | 
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 | 
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    alCaloTop[0] = _xCaloAxis->GetYfit(_zCaloTop); // Yfit   [xCaloTop] | 
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    alCaloTop[1] = _yCaloAxis->GetYfit(_zCaloTop); // Yfit  [yCaloTop] | 
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    alCaloTop[2] = sin(atan(sqrt(pow(tanx, 2) + pow(tany, 2)))); // [sintheta] | 
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    alCaloTop[3] = TMath::Pi() + atan2(tany, tanx); // [phi] | 
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 | 
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    beta = event->GetToFLevel2()->CalcBeta(0, _resMax, _qualCut, _chi2Cut); // TOF stand-alone beta | 
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    alCaloTop[4] = 1. / ((_mass/_zeta) * beta / sqrt(1. - pow(beta, 2))); // [etaP] [rho = (m/Z)*(beta/(sqrt(1-beta^2)))] | 
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 | 
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    _traj->DoTrack(alCaloTop, _zCaloTop); | 
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 | 
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  } | 
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  else { | 
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    return 1; | 
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  } | 
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 | 
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  for (Int_t igf = 0; igf < TrkParams::nGF; igf++) { | 
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 | 
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    if (_iMethod == 0) { // straight track | 
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      // NOTE: par[0] is the x (y) coordinate on plane z=0 in PAMELA reference (magnet centre) | 
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      xCaloTrack = _xCaloAxis->par[0] + tanx * TrkParams::zGF[igf]; // cm | 
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      yCaloTrack = _yCaloAxis->par[0] + tany * TrkParams::zGF[igf]; // cm | 
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    } | 
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    else if (_iMethod == 1) { | 
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      xCaloTrack = _traj->x[igf]; | 
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      yCaloTrack = _traj->y[igf]; | 
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    } | 
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 | 
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    if (!(TrkParams::xGF_min[igf] + _xTolCaloTrack < xCaloTrack | 
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        && xCaloTrack < TrkParams::xGF_max[igf] - _xTolCaloTrack)) { | 
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      return 0; | 
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    } | 
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 | 
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    if (!(TrkParams::yGF_min[igf] + _yTolCaloTrack < yCaloTrack | 
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        && yCaloTrack < TrkParams::yGF_max[igf] - _yTolCaloTrack)) { | 
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      return 0; | 
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    } | 
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 | 
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  } | 
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 | 
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  return CUTOK; | 
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 | 
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} | 
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 | 
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#endif /* NO_CALOAXIS */ |