首页> 外文会议>Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2011 IEEE >Performance of the trigger detectors of the ALICE muon spectrometer during the first years of data taking at LHC
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Performance of the trigger detectors of the ALICE muon spectrometer during the first years of data taking at LHC

机译:在LHC采集数据的头几年中,ALICEμon光谱仪的触发检测器的性能

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The trigger system of the ALICE muon spectrometer consists of 4 planes of Resistive Plate Chambers (RPC) for a total of 72 modules covering an area of 140 m2. The detectors are read out by means of 21K front-end channels and the signals are processed by fast electronics providing the muon trigger to the experiment. In 2010 and 2011 the muon spectrometer was operational during the whole LHC running period which includes p-p collisions at √s = 7 TeV and 1 month of Pb-Pb collisions at √SNN = 2.76 TeV. The RPCs were operated in avalanche mode in highly-saturated conditions. The detector working parameters, after the setting-up performed during the commissioning with cosmic muons, have been fine-tuned later on using the high statistics of muon tracks from p-p collisions. The behavior of the trigger detectors during the first years of data taking will be presented. In particular, besides a description of the optimization of the RPC running parameters, the stability of the detector performance will be discussed.
机译:ALICEμon光谱仪的触发系统由4个平面的电阻板腔(RPC)组成,总共72个模块,覆盖140 m 2 的面积。通过21K前端通道读取检测器,并通过快速电子设备处理信号,从而为实验提供介子触发。在2010年和2011年,μon光谱仪在整个大型强子对撞机运行期间均可使用,包括√s= 7 TeV时的p-p碰撞和√SNN= 2.76 TeV时1个月的Pb-Pb碰撞。 RPC在高饱和条件下以雪崩模式运行。在使用宇宙μ子调试期间完成设置后,探测器的工作参数已在以后使用来自p-p碰撞的μ子轨道的高统计数据进行了微调。将介绍在数据采集的头几年中触发检测器的行为。特别是,除了描述RPC运行参数的优化之外,还将讨论检测器性能的稳定性。

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