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Calibration of the CMS electromagnetic calorimeter with LHC collision data

机译:用LHC碰撞数据校准CMS电磁热量计

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摘要

The CMS ECAL is a high resolution electromagnetic calorimeter which relies upon precision calibration in order to achieve and maintain its design performance. Variations in light collected from the lead tungstate crystals, due to intrinsic differences in crystals/photodetectors, as well as variations with time due to radiation damage for example, need to be taken into account. Sophisticated and effective methods of inter-crystal and absolute calibration have been devised, using collision data from the 2011 LHC run and a dedicated light injection system. For inter-calibration, low mass particle (π~0 and η) decays to two photons are exploited, as well as the azimuthal symmetry of the average energy deposition at a given pseudorapidity. The light injection system monitors the channel response in real-time and enables the re-calibration of the measured energies over time. This is cross-checked by the comparison of E/p measurements of electrons from W decays (where the momentum is measured in the CMS tracker) with/without these re-calibrations applied. Absolute calibration has been performed using Z decays into electron-positron pairs.
机译:CMS ECAL是一种高分辨率电磁热量计,它依赖于精密校准才能实现并保持其设计性能。需要考虑由于晶体/光电检测器的固有差异而导致的从钨酸铅晶体收集的光的变化,以及由于例如辐射损伤而导致的时间变化。利用2011年LHC运行的碰撞数据和专用的光注入系统,已经设计出了复杂而有效的晶间和绝对校准方法。为了进行相互校准,利用了低质量的粒子(π〜0和η)衰减到两个光子,以及在给定的伪快速度下平均能量沉积的方位对称性。光注入系统实时监控通道响应,并随着时间的推移重新校准所测量的能量。通过比较使用/不使用这些重新校准的来自W衰减的电子的E / p测量值(在CMS跟踪器中测量了动量),可以对此进行交叉检查。已经使用Z衰变成电子-正电子对进行了绝对校准。

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