论文标题
CMS Endcap Muon系统的最内向电台的大面积三角探测器和新箔设计的速率能力
Rate capability of large-area triple-GEM detectors and new foil design for the innermost station, ME0, of the CMS endcap muon system
论文作者
论文摘要
为了将CMS MUON光谱仪的接受扩展到区域2.4 $ <|η| <$ 2.8,计划在CMS 2阶段升级的CMS 2级升级中,组成ME0车站的三个GEM室。这些大面积微图案气态探测器必须在充满挑战的环境中运行,预期的背景粒子通量高达150 kHz/cm $^2 $。与传统的非抗性气态探测器不同,此类三个GEM探测器的速率能力不受空间电荷效应的限制,而是由于瓦隆诱导的电流引起的电阻电流流过电阻保护电路(引入排放淬火器)而导致的腔室电极降液。我们提出了一项研究,该研究具有适中通量的大面积三次探测器,以获得高积分命中率。结果表明,标称检测器气体增益的40%下降,这将导致跟踪效率的严重损失。我们讨论了可能的缓解策略,从而导致针对电极分割的GEM箔的新设计,而不是“传统”的横向分割。新设计的优点包括跨不同领域的均匀命中率,无需电压补偿而无需电压赔偿的增益损失以及在背景通量形状上的检测器增益的独立性。
To extend the acceptance of the CMS muon spectrometer to the region 2.4 $<|η|<$ 2.8, stacks of triple-GEM chambers, forming the ME0 station, are planned for the CMS Phase 2 Upgrade. These large-area micro-pattern gaseous detectors must operate in a challenging environment with expected background particle fluxes up to 150 kHz/cm$^2$. Unlike traditional non-resistive gaseous detectors, the rate capability of such triple-GEM detectors is limited not by space charge effects, but by voltage drops on the chamber electrodes due to avalanche-induced currents flowing through the resistive protection circuits (introduced as discharge quenchers). We present a study of the irradiation of large-area triple-GEM detectors with moderate fluxes to obtain a high integrated hit rate. The results show drops as high as 40% of the nominal detector gas gain, which would result in severe loss of tracking efficiency. We discuss possible mitigation strategies leading to a new design for the GEM foils with electrode segmentation in the radial direction, instead of the "traditional" transverse segmentation. The advantages of the new design include uniform hit rate across different sectors, minimization of gain-loss without the need for voltage compensation, and independence of detector gain on background flux shape.