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Muon Detector-Description as-built and its Simulation for the ATLAS Experiment

机译:建成的Muon探测器描述及其在ATLAS实验中的仿真

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The ATLAS detector at CERN is designed to fully exploit the physics potential of the LHC by providing precision measurements of the mass and identification of particles emerging from high-energy proton-proton collisions. The ATLAS Muon Spectrometer is a large and complex system, comprising Monitored Drift Tubes (MDT), Cathode Strip Chambers (CSC), Resistive Plate Chambers (RPC), and Thin Gap Chambers (TGC). These systems are described in the software using a set of geometrical primitives, called GeoModel, which constructs a transient model from primary parameters, called AMDB, stored in the detector description database. The model provides a single interface to the GEANT4 simulation, event reconstruction, and trigger software. In the present note we describe the current status of the ATLAS Muon Spectrometer simulation, the geometry software, placing an emphasis on the achievement of realistic effects recently implemented to take into account the detector as-built. A first evaluation of as-built geometry in the simulation on the Spectrometer performance and on the physics observable is also discussed.
机译:CERN的ATLAS探测器旨在通过提供质量的精确测量和识别从高能质子-质子碰撞中产生的粒子来充分利用大型强子对撞机的物理潜能。 ATLAS Muon光谱仪是一个大型且复杂的系统,包括可监测的漂移管(MDT),阴极剥离室(CSC),电阻板室(RPC)和薄间隙室(TGC)。这些系统在软件中使用称为GeoModel的一组几何图元进行描述,该几何图元根据存储在检测器描述数据库中的主要参数(称为AMDB)构造了一个瞬态模型。该模型为GEANT4仿真,事件重建和触发软件提供了一个单一接口。在本说明中,我们描述了ATLAS Muon光谱仪模拟,几何软件的当前状态,着重强调了最近实现的,考虑到所构建探测器的现实效果。还讨论了在光谱仪性能和可观察到的物理模拟中对初生几何的首次评估。

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