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Novel Triple-GEM Mechanical Design for the CMS-ME0 Detector, Preliminary Performance and RD Results

机译:CMS-ME0检测器的新型三宝石机械设计,初步性能和研发结果

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In the framework of the HL-LHC project, the upgrade of the CMS Muon System foresees the installation of three new muon stations based on the GEM technology, named as GE1/1, GE2/1 and ME0. The CMS GEM Group has developed a novel construction design of GE1/1 triple-GEM detectors; especially, a new self-stretching technique has been introduced to mechanically stretch the GEM foils without using spacer grids or glue inside the gas volume. As has been observed, the PCB boards get deformed under the internal gas overpressure, introducing irregularities in the planarity of the detector, which could potentially affect the uniformity of the detector performance. New solutions and design upgrades have been implemented to prevent such effects in future GE2/1 and ME0 upgrade projects. The contribution will focus on the novel design solutions based on the PCB pillars and their impact on the performance of the detector. Furthermore, the early results of the R&D campaign will be presented regarding the optimization of the detector for the very high hit rate environment and the reduction of the discharge probability.
机译:在HL-LHC项目的框架中,CMS MUON系统的升级基于GEM技术的三个新的MUON站安装,名为GE1 / 1,GE2 / 1和ME0。 CMS GEM集团开发了一种新型建筑设计GE1 / 1三宝石探测器;特别是,已经引入了一种新的自拉伸技术,以机械地拉伸宝石箔,而不使用气体体积内的垫片栅格或胶水。如已经观察到的,PCB板在内部气体过压下变形,在探测器的平面中引入不规则,这可能会影响探测器性能的均匀性。已实施新的解决方案和设计升级,以防止未来GE2 / 1和ME0升级项目中的效果。该贡献将专注于基于PCB支柱的新型设计解决方案及其对探测器性能的影响。此外,R&D广告系列的早期结果将呈现对探测器的优化,用于非常高的击中率环境和降低放电概率。

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