首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Performance studies of resistive-strip bulk micromegas detectors in view of the ATLAS New Small Wheel upgrade
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Performance studies of resistive-strip bulk micromegas detectors in view of the ATLAS New Small Wheel upgrade

机译:电阻板散装散热器的性能研究鉴于地图集新的小轮升级

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摘要

The ATLAS collaboration at the Large Hadron Collider at CERN has endorsed the resistive-strip micromegas technology for the high luminosity upgrade of the first muon station in the high-rapidity region, the so called "New Small Wheel'' project. It requires detectors with a spatial resolution of similar to 100 mu m, fully efficient up to a particle rate of similar to 20 kHz/cm(2). In order to demonstrate that the resistive-strip micromegas technology fulfils these requirements, small resistive bulk micromegas have been studied with radioactive sources and with high energy beams. The micromegas chambers were operated with an Ar+7% CO2 gas mixture and read out using the APV25 chip. Results on the detection efficiency and the position resolution are presented for track impact angles from 0 degrees to 40 degrees. A position reconstruction method has been developed for inclined tracks, called the "micro-TPC method''. A description of the method along with performance studies is presented. In addition, the impact of the unavoidable presence of pillars and the relative alignment of readout and resistive strips on the micromegas performance has been quantified. In view of the fact that the micromegas detectors will also contribute to the trigger in ATLAS their time response has been studied.
机译:CERN的大都龙撞机的地图集协作已经批准了电阻条微磁节技术,用于高速度地区的第一个MUON站的高亮度升级,所谓的“新小轮”项目。它需要探测器类似于100 mu m的空间分辨率,完全有效地效率相似的粒度与20kHz / cm(2)相似。为了证明电阻条微磁节技术满足这些要求,已经研究了小的电阻散装体积计具有放射源和高能量梁。MicroMegas腔室用Ar + 7%CO 2气体混合物进行操作,并使用APV25芯片读出。结果对从0度到轨道冲击角的检测效率和位置分辨率。 40度。已经为倾斜轨道开发了一个位置重建方法,称为“Micro-TPC方法”。提出了该方法以及性能研究的描述。此外,已经量化了不可避免的柱子的影响和读出和电阻条对MicroMegas性能的相对对准的影响。鉴于MicroMegas探测器还将有助于图表中的触发器,他们的时间响应已经研究。

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