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Advances in triple-GEM detector operation for high-rate particle triggering

机译:用于高速粒子触发的三重GEM检测器操作方面的进展

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We report the results of a systematic study of the time performance of triple-GEM detectors operated with several gas mixtures which are new for this kind of detectors. This study was performed in the framework of an R&D activity on detectors for the level 0 LHCb muon trigger. We show that a considerable improvement, with respect to the traditional gas mixture Ar/CO/sub 2/(70/30), is obtained with the fast and high yield based CF/sub 4/ and iso-C/sub 4/H/sub 10/ gas mixtures; time resolutions better than 5 ns. Discharges studies have been performed with high intensity pion/proton beams at the /spl pi/M1 beam facility of the Paul Sherrer Institute (PSI). The results show that the operation of the detector is very stable, if a small fraction of iSO-C/sub 4/H/sub 10/ or a large amount of CF/sub 4/, is used. The role of the electron diffusion in the formation of discharges, has been studied testing two different detector gap geometries.
机译:我们报告了使用几种混合气体操作的三重GEM检测器的时间性能的系统研究的结果,这对于此类检测器来说是新的。这项研究是在针对0级LHCbμon触发器的检测器上进行R&D活动的框架中进行的。我们表明,相对于传统的气体混合物Ar / CO / sub 2 /(70/30),使用基于CF / sub 4 /和iso-C / sub 4 / H的快速且高收率的产品,可以获得相当大的改进/ sub 10 /混合气体;时间分辨率优于5 ns。在Paul Sherrer研究所(PSI)的/ spl pi / M1射束设施中使用高强度的pion /质子射束进行了放电研究。结果表明,如果使用少量的iSO-C / sub 4 / H / sub 10 /或大量的CF / sub 4 /,检测器的操作将非常稳定。电子扩散在放电形成中的作用已通过测试两种不同的探测器间隙几何形状进行了研究。

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