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Investigation and Mitigation of Crosstalk in the Prototype ME0 GEM Detector for the Phase-2 Muon System Upgrade of the CMS Experiment: On behalf of the CMS Muon Group

机译:CMS实验阶段2 MuOn系统升级的原型Me0 Gem检测器中串扰调查和减轻:代表CMS MUON组

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The LHe is currently undergoing a high luminosity upgrade, which is set to increase the instantaneous luminosity by at least a factor of five. This luminosity increase will result in a higher muon flux rate in the forward region and overwhelm the current trigger system of the CMS experiment. The MEO, a gas electron multiplier detector, is proposed for the Phase-2 Muon System Upgrade for the CMS experiment to help increase the muon acceptance and to control the Level 1 muon trigger rate. A recent design iteration of this detector features GEM foils that are segmented on both sides, which helps to lower the probability of high voltage discharges. However, during preliminary testing of the chamber, substantial crosstalk between readout sectors was observed. Here, we investigate, characterize, and quantify the crosstalk present in the detector, and also estimate the performance of the chamber as a result of this crosstalk via simulation results of the detector dead time, efficiency loss, and frontend electronics response. The results of crosstalk via signals produced by applying a square voltage pulse directly on the readout strips of the detector with a signal generator are summarized. We also present the efficacy of mitigation strategies including bypass capacitors and increasing the area of the HV segments on the third GEM foil in the detector. We find that the crosstalk is a result of capacitive coupling between the readout strips on the readout board and between the readout strips and the bottom of the third GEM foil. Our results show that the crosstalk generally follows a pattern where the largest magnitude of crosstalk is within the same azimuthal readout segment in the detector, and in the next-nearest horizontal segments in eta. Generally, the bypass capacitors and increased area of the HV segments successfully lower the crosstalk in the sectors where they are located; on average, we observe a maximum decrease of crosstalk in sectors previously experiencing crosstalk from (1.66±0.03)% to (1.11±0.02)% with all HV segments connected in parallel on the bottom of the third GEM foil, with the addition of an HV low-pass filter connected to this electrode, and an HV divider. However, with these mitigation strategies, we also observe slightly increased crosstalk (≨ 0.4%) in readout sectors farther away.
机译:LHE目前正在进行高亮度升级,该升级设定为增加瞬时亮度至少五倍。该亮度增加将导致前向区域中的μ子通量速率更高,并且压倒CMS实验的电流触发系统。对于CMS实验,提出了一种气体电子乘法器检测器,为CMS实验提出了相位-2 MuOn系统升级,以帮助增加μON接受并控制1级μ子触发率。该探测器的最近设计迭代具有在两侧分段的宝石箔,这有助于降低高压放电的概率。然而,在腔室的初步测试期间,观察到读出扇区之间的实质性串扰。在这里,我们研究了检测器中存在的串扰,表征和量化串扰,并且还通过检测器死区时间,效率损失和前端电子响应的仿真结果来估计腔室的性能。总结了通过通过用信号发生器施加正方形电压脉冲在检测器的读出条上施加方形电压脉冲产生的信号的串扰的结果。我们还提出了缓解策略,包括旁路电容器,并增加了探测器中的第三宝石箔上的HV段区域。我们发现串扰是读出板上的读出条与读出条和第三宝石箔的底部之间的电容耦合的结果。我们的研究结果表明,串扰通常遵循串扰最大幅度在探测器中的相同方位角读出片段中的图案,以及在ETA中的下一最接近的水平段。通常,HV段的旁路电容和增加的区域成功降低了它们所在的扇区的串扰;平均而言,我们观察到先前经历串扰(1.66±0.03)%至(1.11±0.02)%的扇形串扰的最大减少,所有HV段在第三宝石箔底部并联连接,加入HV低通滤波器连接到该电极,以及HV分频器。然而,随着这些缓解策略,我们也观察到较远的读数部门的串扰(≨0.4%)略微增加。

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