/
githubmirror
/
cmssw
Обзор
Документация
Войти
/
githubmirror
/
cmssw
Код
Запросы
0
Пакеты
0
Релизы
0
Аналитика
Безопасность
master
CondFormats/PPSObjects/interface/CTPPSBeamParameters.h
131 строка
4 KB
Jan Kaspar
Added simulation of vertex time.
30 июн 2020, 12:30
30 июн 2020, 12:30
d3fd3d5
Код
Авторство
О чём код?
#ifndef CondFormats_PPSObjects_CTPPSBeamParameters_h #define CondFormats_PPSObjects_CTPPSBeamParameters_h // -*- C++ -*- // // Package: PPSObjects // Class: CTPPSBeamParameters // /**\class CTPPSBeamParameters CTPPSBeamParameters.h CondFormats/CTPPSRedoutObjects/src/CTPPSBeamParameters.cc Description: Beam parameters for proton reconstruction Implementation: <Notes on implementation> */ // Original Author: Wagner Carvalho // Created: 20 Nov 2018 // #include "CondFormats/Serialization/interface/Serializable.h" #include "FWCore/MessageLogger/interface/MessageLogger.h" class CTPPSBeamParameters { public: // Constructor CTPPSBeamParameters(); // Destructor ~CTPPSBeamParameters(); // Getters double getBeamMom45() const; double getBeamMom56() const; double getBetaStarX45() const; double getBetaStarY45() const; double getBetaStarX56() const; double getBetaStarY56() const; double getBeamDivergenceX45() const; double getBeamDivergenceY45() const; double getBeamDivergenceX56() const; double getBeamDivergenceY56() const; double getHalfXangleX45() const; double getHalfXangleY45() const; double getHalfXangleX56() const; double getHalfXangleY56() const; double getVtxOffsetX45() const; double getVtxOffsetY45() const; double getVtxOffsetZ45() const; double getVtxOffsetT45() const; double getVtxOffsetX56() const; double getVtxOffsetY56() const; double getVtxOffsetZ56() const; double getVtxOffsetT56() const; double getVtxStddevX() const; double getVtxStddevY() const; double getVtxStddevZ() const; double getVtxStddevT() const; // Setters void setBeamMom45(double mom); void setBeamMom56(double mom); void setBetaStarX45(double beta); void setBetaStarY45(double beta); void setBetaStarX56(double beta); void setBetaStarY56(double beta); void setBeamDivergenceX45(double div); void setBeamDivergenceY45(double div); void setBeamDivergenceX56(double div); void setBeamDivergenceY56(double div); void setHalfXangleX45(double angle); void setHalfXangleY45(double angle); void setHalfXangleX56(double angle); void setHalfXangleY56(double angle); void setVtxOffsetX45(double offset); void setVtxOffsetY45(double offset); void setVtxOffsetZ45(double offset); void setVtxOffsetT45(double offset); void setVtxOffsetX56(double offset); void setVtxOffsetY56(double offset); void setVtxOffsetZ56(double offset); void setVtxOffsetT56(double offset); void setVtxStddevX(double stddev); void setVtxStddevY(double stddev); void setVtxStddevZ(double stddev); void setVtxStddevT(double stddev); void printInfo(std::stringstream &s); private: // LHC sector 45 corresponds to beam 2, sector 56 to beam 1 double beam_momentum_45_; // GeV double beam_momentum_56_; // GeV double beta_star_x_45_, beta_star_x_56_; // cm double beta_star_y_45_, beta_star_y_56_; double beam_divergence_x_45_, beam_divergence_x_56_; // rad double beam_divergence_y_45_, beam_divergence_y_56_; double half_crossing_angle_x_45_, half_crossing_angle_x_56_; // rad double half_crossing_angle_y_45_, half_crossing_angle_y_56_; // splitting between 45 and 56 may effectively account for magnet misalignment double vtx_offset_x_45_, vtx_offset_x_56_; // cm double vtx_offset_y_45_, vtx_offset_y_56_; // cm double vtx_offset_z_45_, vtx_offset_z_56_; // cm double vtx_offset_t_45_, vtx_offset_t_56_; // cm // the following variables might possibly be in another CMS record already, // but we might want to keep them for completeness/independence double vtx_stddev_x_; // cm double vtx_stddev_y_; // cm double vtx_stddev_z_; // cm double vtx_stddev_t_; // cm COND_SERIALIZABLE; }; std::ostream &operator<<(std::ostream &, CTPPSBeamParameters); #endif