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Performances and ageing study of resistive-anodes micromegas detectors for HL-LHC environment

机译:用于HL-LHC环境的电阻阳极微量气体探测器的性能和老化研究

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摘要

With the tenfold luminosity increase envisaged at the HL-LHC, the background (i.e., photons, neutrons, ..) and the event pileup probability are expected to highly increase in proportion in the different experiments, especially in the forward regions, for instance the muons chambers of the ATLAS detector. Detectors based on the Micromegas principle should be good alternatives for the detector upgrade in the HL-LHC framework because of its good spatial (< 100μm) and time (few ns) resolutions, high-rate capability, radiation hardness, good robustness, and the possibility to build large areas. The aim of this study is to demonstrate that it is possible to reduce the discharge probability and protect the electronics by using a resistive anode plane in a high-flux hadrons environment. Several prototypes of 10 × 10 cm2, with different pitches (0.5-2 mm) and different resistive layers have been tested at CERN (π+@SPS). Several tests have been performed with a telescope at different voltages to assess the performance of the detectors in terms of position resolution and efficiency. The spark behavior in these conditions has also been evaluated. Resistive coating has been shown to be a successful method to reduce the effect of sparks on the efficiency of micromegas. A good spatial resolution (\∼ 80 μm) can be reached with a resistive strip coating detector of 1-mm pitch, and a high efficiency ( > 98\%) can be achieved with resistive-anode micromegas detector. An X-rays irradiation has also been performed, showing no ageing effect after more than 21 days exposure and an integrated charge of almost 1C. © 2012 IEEE.
机译:随着HL-LHC设想的发光度增加十倍,在不同的实验中,尤其是在前向区域,背景(即光子,中子等)和事件堆积概率有望成比例地大大增加。 ATLAS探测器的μ子腔。基于Micromegas原理的探测器应该是HL-LHC框架中探测器升级的良好替代方案,因为它具有良好的空间(<100μm)和时间(几ns)分辨率,高倍率能力,辐射硬度,良好的鲁棒性和建立大面积的可能性。这项研究的目的是证明在高通量强子环境中使用电阻性阳极平面可以降低放电概率并保护电子设备。已经在CERN(π+ @ SPS)上测试了10×10 cm2,间距(0.5-2 mm)和电阻层不同的几个原型。用望远镜在不同电压下进行了几次测试,以评估探测器的位置分辨率和效率。还评估了这些条件下的火花行为。电阻涂层已被证明是减少火花对微米效率的影响的成功方法。使用1毫米间距的电阻条涂层检测器可以达到良好的空间分辨率(\〜80μm),而使用电阻阳极微米检测器可以实现高效率(> 98%)。还进行了X射线辐照,在暴露超过21天和几乎1C的积分电荷后,没有显示老化效果。 ©2012 IEEE。

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