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Micromegas detectors for the muon spectrometer upgrade of the ATLAS experiment

机译:Micromegas探测器用于ATLAS实验的μ子光谱仪升级

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Large area Micromegas (MM) detectors will be employed for the Muon Spectrometer upgrade of the ATLAS experiment at the LHC. A total surface of about 150 m~2of the forward regions of the Muon Spectrometer will be equipped with 8 layers of MM modules. Each module covers a surface area of approximately 2-3 m~2 for a total active area of 1200 m~2. Together with the small-strips Thin Gap Chambers, they will compose the two New Small Wheels, which will replace the innermost stations of the ATLAS Endcap Muon tracking system in the planned 2018/2019 shutdown. This upgrade will maintain a low p_T threshold for single muons and provide excellent tracking capabilities for the HL-LHC phase. The New Small Wheel (NSW) project requires fully efficient MM chambers with spatial resolution down to 100 μm, at rate capability up to about 15 kHz/cm~2 and operation in a moderate (highly inho-mogeneous) magnetic field up to B=0.3 T. The required tracking capability is provided by the intrinsic spatial resolution combined with a challenging mechanical precision. The design, recent progress in the construction and results from the substantial R& D phase (with a focus on novel technical solutions) is presented. In the R& D phase, small and medium size single layer prototypes have been built, along with, more recently, the first two MM quadruplets in a configuration very close to the final one chosen for the NSW. Several tests have been performed on these prototypes at a high-energy test-beam at CERN, to demonstrate that the achieved performances fulfil the requirements. Recent tests applying various configuration and operating conditions are presented.
机译:LHC的ATLAS实验的Muon光谱仪升级将使用大面积的微米(MM)检测器。 Muon光谱仪前部区域的总表面约150 m〜2将配备8层MM模块。每个模块的表面积约为2-3 m〜2,总有效面积为1200 m〜2。它们将与小条薄间隙室一起组成两个新的小轮,它们将在计划的2018/2019年停工期取代ATLAS Endcap Muon跟踪系统的最内部站。此升级将为单个μ子保持较低的p_T阈值,并为HL-LHC阶段提供出色的跟踪功能。新小车轮(NSW)项目要求具有高效的MM腔室,其空间分辨率低至100μm,速率能力高达15 kHz / cm〜2,并在中等(高度非均匀)磁场下工作,直至B = 0.3T。所需的跟踪能力由固有的空间分辨率和极具挑战性的机械精度共同提供。介绍了设计,近期施工进展以及大量研发阶段的成果(侧重于新颖的技术解决方案)。在研发阶段,已经构建了中小型单层原型,以及最近的前两个MM四联体,其配置非常接近为新南威尔士州选择的最后一个。在CERN的高能测试束上对这些原型进行了几次测试,以证明所达到的性能满足要求。介绍了采用各种配置和操作条件的最新测试。

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