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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Design and construction of integrated small-diameter drift tube and thin-gap resistive plate chambers for the phase-1 upgrade of the ATLAS muon spectrometer
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Design and construction of integrated small-diameter drift tube and thin-gap resistive plate chambers for the phase-1 upgrade of the ATLAS muon spectrometer

机译:集成小直径漂移管和薄间隙电阻板腔的设计和建造,用于ATLAS介子光谱仪的第一阶段升级

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In the long shutdown for the Phase-1 upgrade of the Large Hadron Collider (LHC) in 2019-2020, 16 new integrated muon tracking and trigger chambers will be installed at the ends of the toroid magnet coils in the small azimuthal sectors of the inner barrel layer (BIS) of the ATLAS muon spectrometer in order to improve the trigger selectivity and fake trigger suppression in the transition region 1.0 vertical bar eta vertical bar 1.3 between the barrel part and the endcaps. The new muon detectors consist of a small-diameter muon drift tube (sMDT) precision tracking chamber with 15 mm tube diameter and a pair of thin-gap RPC chambers with 1 mm gas gap width. The new integrated chamber modules (labeled BIS 78) are currently under construction and will replace the present BIS 7 and 8 MDT tracking chambers with 30 mm diameter drift tubes. The project is the pilot phase for the complete replacement of the small barrel inner layer MDT chambers with the new integrated tracking and trigger detectors in the ATLAS Phase-2 upgrade in 2024-2026 in order to increase the barrel first-level muon trigger coverage and efficiency at the high luminosities at HL-LHC. The sMDT chambers have been chosen to make room for the new trigger chambers and because of their eight times higher rate capability than MDT chambers. The new thin-gap RPC chambers have about 15 times lower avalanche charges and correspondingly increased lifetime and rate capability at HL-LHC and will be operated in coincidence with the endcap trigger chambers. They consist of a triplet of gas gaps which has to be very thin as well and which is supported by a light-weight aluminum structure which is interleaved with the sMDT chamber supports.
机译:在2019年至2020年大型强子对撞机(LHC)的第一阶段升级长期停工期间,将在内部小方位扇区的环形磁线圈的末端安装16个新的集成μ子跟踪和触发室ATLAS介子光谱仪的枪管层(BIS),以提高枪管部分和端盖之间的过渡区域1.0 <垂直杆eta垂直杆<1.3的触发区域的选择性和假触发抑制。新的μ子探测器包括一个直径为15 mm的小直径μon漂移管(sMDT)精密跟踪室和一对气隙宽度为1 mm的薄间隙RPC室。新的集成腔室模块(标记为BIS 78)目前正在建造中,将用直径为30 mm的漂移管代替现有的BIS 7和8 MDT跟踪腔室。该项目是在2024年至2026年ATLAS第二阶段升级中使用新的集成跟踪和触发检测器完全替换小枪管内层MDT腔室的试验阶段,以增加枪管第一级μon触发器的覆盖范围和HL-LHC在高亮度下的效率。选择sMDT腔室为新的触发腔室腾出空间,因为它们的倍率能力是MDT腔室的八倍。新的薄间隙RPC腔室的雪崩电荷降低了约15倍,并相应地提高了HL-LHC的寿命和倍率能力,并将与端盖触发腔室同时运行。它们由必须非常薄的三重气隙组成,并且由轻质铝结构支撑,该轻质铝结构与sMDT腔室支架交错。

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