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Extensive performance studies for the ATLAS BIS-MDT precision muon chambers with cosmic rays

机译:带有宇宙射线的ATLAS BIS-MDT精密μ子腔的广泛性能研究

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ATLAS (A Toroidal LHC ApparatuS) is a general-purpose experiment, which will start its operation at the Large Hadron Collider (LHC) at CERN in 2007. The ATLAS detector is designed to explore numerous physics processes by measuring, recording, and investigating the products emerging from proton-proton collisions at energies up to 14 TeV. High-precision muon momentum measurement (dp/p-10% at p/sub T/=1 TeV/c) over large areas using Monitored Drift Tube (MDT) chambers is crucial for the ATLAS experiment. More than 1,200 MDT chambers, assembled from approximately 370,000 drift tubes operated at 3 bar pressure, will be used to provide for the total detector coverage of 5,500 m/sup 2/. Three Greek universities have taken the responsibility to construct 30,000 drift tubes of /spl sim/1.7 in length, to test them and finally assemble them into 120 BIS (Barrel Inner Small) chambers. The design of the muon drift tubes aims at high efficiency (<95%) and a spatial resolution of >80 /spl mu/m (single tube resolution). This paper describes the cosmic ray setup, which has been instrumented in order to verify. that the BIS chamber Module-0 fulfils its design requirements. The analysis of its data shows that the chamber meets these requirements; it has low noise levels, uniform drift properties, good spatial resolution and high particle detection efficiency.
机译:ATLAS(环形LHC装置)是一项通用实验,将于2007年在欧洲核子研究组织的大型强子对撞机(LHC)上开始运行。ATLAS探测器旨在通过测量,记录和研究行星的物理过程来探索多种物理过程。能量高达14 TeV的质子-质子碰撞产生的产物。在大面积上使用监控漂移管(MDT)室进行高精度μ子动量测量(在p / sub T / = 1 TeV / c时为dp / p-10%)对于ATLAS实验至关重要。超过1,200个MDT腔室由大约370,000个在3 bar压力下运行的漂移管组装而成,将用于提供5500 m / sup 2 /的总探测器覆盖范围。三所希腊大学已负责建造30,000个长度为/ spl sim / 1.7的漂移管,对其进行测试,最后将其组装到120个BIS(桶内小)腔室内。 μon漂移管的设计旨在实现高效率(<95%)和> 80 / spl mu / m的空间分辨率(单管分辨率)。本文介绍了宇宙射线设置,已对其进行了检验以进行验证。 BIS舱Module-0满足其设计要求。对其数据的分析表明,该腔室符合这些要求。它具有低噪声水平,均匀的漂移特性,良好的空间分辨率和较高的粒子检测效率。

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