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Efficiency Of Finding Muon Track Trigger Primitives In Cmsrncathode Strip Chambers

机译:在Cmsrncathode条形腔室中找到Muon轨道触发基元的效率

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In the Compact Muon Solenoid (CMS) experiment, muon detection in the forward direction is accomplished by cathode strip chambers (CSC). These detectors identify muons, provide a fast muon trigger, and give a precise measurement of the muon trajectory. There are 468 six-plane CSCs in the system. The efficiency of finding muon trigger primitives (muon track segments) was studied using 36 CMS CSCs and cosmic ray muons during the Magnet Test and Cosmic Challenge (MTCC) exercise conducted by the CMS experiment in 2006. In contrast to earlier studies that used muon beams to illuminate a very small chamber area (<0.01 m~2), results presented in this paper were obtained by many installed CSCs operating in situ over an area of ≈ 23 m~2 as a part of the CMS experiment. The efficiency of finding two-dimensional trigger primitives within six-layer chambers was found to be 99.93 ± 0.03%. These segments, found by the CSC electronics within 800 ns after the passing of a muon through the chambers, are the input information for the Level-1 muon trigger and, also, are a necessary condition for chambers to be read out by the Data Acquisition System.
机译:在紧凑型μon螺线管(CMS)实验中,向前的μon检测是通过阴极剥离室(CSC)完成的。这些检测器识别μ子,提供快速的μ子触发,并精确测量μ子的轨迹。系统中有468个六平面CSC。在2006年由CMS实验进行的磁铁测试和宇宙挑战(MTCC)演习中,使用36个CMS CSC和宇宙射线μ子研究了发现μ子触发原语(μ子轨道段)的效率。为了照亮很小的腔室区域(<0.01 m〜2),本文提出的结果是由许多已安装的CSC在≈23 m〜2的区域内就地操作获得的,这是CMS实验的一部分。发现在六层腔室内找到二维触发图元的效率为99.93±0.03%。这些片段是在μ子通过腔室之后的800 ns内由CSC电子设备发现的,是Level-1μon触发器的输入信息,也是通过数据采集读取腔室的必要条件系统。

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