The Fast Simulation of the CMS Detector at LHC
Быстрая симуляция детектора CMS на LHC
2011-12-23
SCID: 54.1/vvw58yeb
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CMS Fast SimulationGEANT4-based Full SimulationMonte Carlo simulationelectromagnetic calorimetersilicon tracker
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Abstract (AI)
The CMS collaboration has developed a fast Monte Carlo simulation of the CMS detector with event production rates about 100 times faster than the GEANT4-based simulation, with nonetheless comparable accuracy for most of the physics objects typically considered in the analyses. We discuss basic technical principles of the CMS Fast Simulation and their implementation in the different components of the detector: the silicon tracker, the electromagnetic calorimeter, the hadronic calorimeter, the muon system, the Level 1 and the High Level Trigger. A few comparisons of the Fast Simulation results both with the GEANT4-based Full Simulation and with the LHC data are shown.
Key Findings
1
CMS developed a fast Monte Carlo simulation of the CMS detector achieving event production rates about 100 times faster than GEANT4-based simulation
2
Comparisons of Fast Simulation results are presented versus both GEANT4-based Full Simulation and LHC data
3
Technical principles and implementations of the Fast Simulation are provided for the silicon tracker, electromagnetic calorimeter, hadronic calorimeter, muon system, Level-1 trigger, and High Level Trigger
4
The Fast Simulation attains comparable accuracy to GEANT4-based Full Simulation for most physics objects used in analyses
Research Object
Fast Monte Carlo simulation of the CMS detector at the LHC
Research Subject
Performance and accuracy of the CMS Fast Simulation (event production rate ~100× vs GEANT4) and its implementation across detector components (silicon tracker, electromagnetic and hadronic calorimeters, muon system, Level-1 and High-Level Triggers), validated against GEANT4 Full Simulation and LHC data
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2011-12-23
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