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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Simulation study of energy resolution, position resolution and π~0-γ separation of a sampling electromagnetic calorimeter at high energies
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Simulation study of energy resolution, position resolution and π~0-γ separation of a sampling electromagnetic calorimeter at high energies

机译:在高能量下采样电磁量热计的能量分辨率,位置分辨率和π〜0-γ分离的仿真研究

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摘要

A simulation study of energy resolution, position resolution, and π~0-γ separation using multivariate methods of a sampling calorimeter is presented. As a realistic example, the geometry of the calorimeter is taken from the design geometry of the Shashlik calorimeter which was considered as a candidate for CMS endcap for the phase II of LHC running. The methods proposed in this paper can be easily adapted to various geometrical layouts of a sampling calorimeter. Energy resolution is studied for different layouts and different absorber-scintillator combinations of the Shashlik detector. It is shown that a boosted decision tree using fine grained information of the calorimeter can perform three times better than a cut-based method for separation of π~0 from γ over a large energy range of 20 GeV-200 GeV.
机译:使用采样量热计的多元方法对能量分辨率,位置分辨率和π〜0-γ分离进行了模拟研究。 作为一个现实的例子,量热计的几何形状取自Shashlik量热仪的设计几何形状,该几何形状被认为是LHC运行的LHC II期CMS Endcap的候选。 本文提出的方法很容易适应采样量热计的各种几何布局。 研究了用于不同布局的能量分辨率和Shashlik探测器的不同吸收量表组合。 结果表明,使用量热计的细粒度信息的增强决策树可以比在20 GEV-200 GEV的较大能量范围内从γ分离π〜0的方法要好三倍。

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