CMS实验中位置和角度的不确定性对μ子重建性能的影响

G. Abbiendi, S. S. Chhibra
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引用次数: 0

摘要

对于实现高动量下的最佳μ子重建性能,特别是最佳的动量测量,μ子室之间和内部跟踪器之间的对齐至关重要。随着Run2大型强子对撞机能量和光度的增加,高动量介子对于寻找TeV左右质量的新粒子变得越来越重要。近年来,由于引入了介子腔中段的位置和角度的对准不确定性,CMS实验的介子重建得到了改进,并且变得更加稳健。不仅在高能下动量分辨率提高,而且由于更好的μ子轨道构建和贴合质量,触发效率也有所提高,特别是在探测器开启和关闭后的数据采集初始阶段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of position and angle uncertainties in the muon reconstruction of the CMS experiment, and impact on the performance
The alignment of muon chambers relative to each other and to the inner tracker is crucial to achieve the optimal performance of muon reconstruction at high momentum, in particular the best possible momentum measurement. With the energy and luminosity increase in LHC Run2, the high momentum muons have become more important for the searches of new particles with masses around the TeV scale. The muon reconstruction of the CMS experiment has been recently improved and made more robust with the introduction of alignment uncertainties on the positions and angles of the segments in the muon chambers. Not only does the momentum resolution improve at high energy, but, owing to the better quality of the muon track building and fit, also the trigger efficiency increases, especially in the initial phase of data-taking, after the opening and closure of the detector.
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