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Calibration and Performance of the CMS Electromagnetic Calorimeter in LHC Run2

机译:LHC Run2中CMS电磁热计的校准和性能

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Many physics analyses using the Compact Muon Solenoid (CMS) detector at the LHC require accurate, high resolution electron and photon energy measurements. Excellent energy resolution is crucial for studies of Higgs boson decays with electromagnetic particles in the final state, as well as searches for very high mass resonances decaying to energetic photons or electrons. The CMS electromagnetic calorimeter (ECAL) is a fundamental instrument for these analyses and its energy resolution is crucial for the Higgs boson mass measurement. Recently the energy response of the calorimeter has been precisely calibrated exploiting the full Run2 data, aiming at a legacy reprocessing of the data. A dedicated calibration of each detector channel has been performed with physics events exploiting electrons from W and Z boson decays, photons from π~(0)and η decays, and from the azimuthally symmetric energy distribution of minimum bias events. This talk presents the calibration strategies that have been implemented and the excellent performance achieved by the CMS ECAL with the ultimate calibration of Run2 data, in terms of energy scale stability and energy resolution.
机译:使用LHC处使用紧凑的MUON电磁阀(CMS)检测器的许多物理分析需要精确,高分辨率的电子和光子能量测量。优异的能量分辨率对于HIGGS玻色子衰减在最终状态下的电磁颗粒的研究至关重要,以及搜索非常高的质量共振衰减到能量光子或电子。 CMS电磁量热计(ECAL)是这些分析的基本仪器,其能量分辨率对于HGGS玻色子质量测量至关重要。最近,热量计的能量响应已经精确地校准了利用完整的Run2数据,旨在遗留数据的重新处理。已经使用来自W和Z玻色子衰减的物理事件进行了每个探测器通道的专用校准,来自π〜(0)和η衰减的光子,以及来自最小偏置事件的方位称对称的能量分布。本讲座提出了已实施的校准策略以及CMS ECAL在能量尺度稳定性和能量分辨率方面具有run2数据的最终校准的CMS ECAL实现的优异性能。

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