首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Construction and test of a full prototype drift-tube chamber for the upgrade of the ATLAS muon spectrometer at high LHC luminosities
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Construction and test of a full prototype drift-tube chamber for the upgrade of the ATLAS muon spectrometer at high LHC luminosities

机译:完整的原型漂移管腔室的构建和测试,用于在高LHC发光度下升级ATLAS介子光谱仪

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For the planned high-luminosity upgrades of the Large Hadron Collider (LHC) background rates of neutrons and gamma rays of up to 14 kHz/cm~2 are expected which exceed the rate capability of the current ATLAS precision muon tracking detectors, the Monitored Drift Tube (MDT) chambers, with a drift tube diameter of 30 mm. Smaller diameter drift tube (sMDT) chambers with 15 mm tube diameter have been developed for upgrades of the ATLAS muon spectrometer. A full sMDT prototype chamber has been constructed and tested in a muon beam at CERN and with cosmic muons at high background irradiation rates of up to 95 kHz/cm~2 and 1400 kHz/tube. The test results demonstrate the required track reconstruction efficiency and spatial resolution of the sMDT chambers at background rates well beyond the maximum expected values at high-luminosity LHC. The sense wire locations in the prototype chamber have been measured with few microns precision with cosmic rays using precise reference chambers confirming the required wire positioning accuracy of better than the 20 μm.
机译:对于大型强子对撞机(LHC)计划的高发光度升级,预期中子和伽马射线的本底速率可达14 kHz / cm〜2,这超过了当前ATLAS精密μ子跟踪探测器的速率能力,即被监控的漂移管(MDT)室,漂移管直径为30毫米。已经开发出直径为15 mm的更小直径的漂移管(sMDT)室,用于升级ATLASμon光谱仪。完整的sMDT原型室已在CERN的μ子束中与宇宙μ子一起在高达95 kHz / cm〜2和1400 kHz /管的高背景辐射速率下进行了构建和测试。测试结果表明,在背景速率下,sMDT腔室所需的轨道重建效率和空间分辨率远远超过了在高发光度LHC下的最大期望值。原型室中的传感线位置已使用精确的参考室以几微米的精度和宇宙射线进行了测量,确认了所需的线材定位精度优于20μm。

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