ATLAS新型小轮的微燃气项目

I. Manthos, I. Maniatis, I. Maznas, M. Tsopoulou, P. Paschalias, T. Koutsosimos, S. Kompogiannis, C. Petridou, S. Tzamarias, K. Kordas, C. Lampoudis, I. Tsiafis, D. Sampsonidis
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引用次数: 3

摘要

为了满足即将到来的大型强子对撞机光度升级的要求,欧洲核子研究中心ATLAS实验选择MicroMegas技术用于用于精确跟踪的μ子光谱仪的小轮升级。μ子光谱仪前方区域的一个大表面将配备8层MicroMegas模块,形成总活跃面积为$1200\,m^{2}$。新小轮计划在大型强子对撞机第二次长时间停机期间安装在ATLAS探测器$1.3<\vert \eta <2.7$的前向区域。新的小轮必须在高背景辐射环境中运行,同时重建μ子轨道并为一级触发器提供信息。该项目需要完全高效的MicroMegas室,空间分辨率低至$100\,{\mu}m$,速率能力高达约$15\,kHz/cm^{2}$,并在高达$B=0.3\,T$的中等(高度不均匀)磁场中运行。所需的跟踪与固有的空间分辨率以及苛刻的机械精度相结合。将概述MicroMegas模块的设计、建造和组装过程。
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The micromegas project for the ATLAS new small wheel
The MicroMegas technology was selected by the ATLAS experiment at CERN to be adopted for the Small Wheel upgrade of the Muon Spectrometer, dedicated to precision tracking, in order to meet the requirements of the upcoming luminosity upgrade of the Large Hadron Collider. A large surface of the forward regions of the Muon Spectrometer will be equipped with 8 layers of MicroMegas modules forming a total active area of $1200\,m^{2}$. The New Small Wheel is scheduled to be installed in the forward region of $1.3<\vert \eta \vert <2.7$ of the ATLAS detector during the second long shutdown of the Large Hadron Collider. The New Small Wheel will have to operate in a high background radiation environment, while reconstructing muon tracks as well as furnishing information for the Level-1 trigger. The project requires fully efficient MicroMegas chambers with spatial resolution down to $100\,{\mu}m$, a rate capability up to about $15\,kHz/cm^{2}$ and operation in a moderate (highly inhomogeneous) magnetic field up to $B=0.3\,T$. The required tracking is linked to the intrinsic spatial resolution in combination with the demanding mechanical accuracy. An overview of the design, construction and assembly procedures of the MicroMegas modules will be reported.
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