论文标题

爱丽丝·穆恩(Alice Muon)RPC的性能和老化研究

Performance and aging studies for the ALICE muon RPCs

论文作者

Quaglia, Luca, Bianchi, Antonio, Ferretti, Alessandro, Gagliardi, Martino, Stocco, Diego, Guida, Roberto, Mandelli, Beatrice, Alvigini, Laura

论文摘要

Alice Muon Trigger(MTR)系统由排列在两个站点的72个电阻板室(RPC)探测器组成,每个检测器由两个平面组成,每个平面为18 rpcs。 The detectors are operated in maxi-avalanche mode using a mixture of 89.7% C$_2$H$_2$F$_4$, 10% i-C$_4$H$_{10}$ and 0.3% SF$_6$.在整个LHC Run2(2015-18)中,随着时间的推移,许多探测器性能指标(例如效率和暗电流)都受到监测。虽然效率表现出非常好的稳定性,但观察到吸收的黑电流的稳定增加。 自2018年底以来,LHC进入了一个长期关闭的阶段,在此期间,Alice实验将升级以应对下一阶段的数据获取,预计将于2021年进行。MTR正在对前端和读取电子设备进行重大升级,并将改变其功能,并改变其MUONDICENSIFIER。仅计划在升级期间替换最受辐照的RPC。因此,重要的是进行专门的研究以进一步了解检测器的状态。特别是,将两个RPC用纯AR气体长时间冲洗,并通过完全电离气体来产生血浆。使用气相色谱仪与质谱仪结合使用,并使用离子选择电极站进行了评估,该气体色谱仪与质谱仪结合使用,并可能存在源自等离子体与检测器内表面的相互作用的氟化化合物。 这项贡献将包括对LHC上Alice Muon RPC性能的详细审查。还讨论了上述氩等离子体测试的过程和结果。

The ALICE muon trigger (MTR) system consists of 72 Resistive Plate Chamber (RPC) detectors arranged in two stations, each composed of two planes with 18 RPCs per plane. The detectors are operated in maxi-avalanche mode using a mixture of 89.7% C$_2$H$_2$F$_4$, 10% i-C$_4$H$_{10}$ and 0.3% SF$_6$. A number of detector performance indicators, such as efficiency and dark current, have been monitored over time throughout the LHC Run2 (2015-18). While the efficiency showed very good stability, a steady increase in the absorbed dark current was observed. Since the end of 2018, the LHC has entered a phase of long shutdown, during which the ALICE experiment will be upgraded to cope with the next phase of data taking, expected in 2021. The MTR is undergoing a major upgrade of the front-end and readout electronics, and will change its functionalities, becoming a Muon Identifier. Only the replacement of the most irradiated RPCs is planned during the upgrade. It is therefore important to perform dedicated studies to gain further insights into the status of the detector. In particular, two RPCs were flushed with pure Ar gas for a prolonged period of time and a plasma was created by fully ionizing the gas. The output gas was analyzed using a Gas Chromatograph combined with a Mass Spectrometer and the possible presence of fluorinated compounds originating from the interaction of the plasma with the inner surfaces of the detector has been assessed using an Ion-Selective Electrode station. This contribution will include a detailed review of the ALICE muon RPC performance at the LHC. The procedure and results of the argon plasma test, described above, are also discussed.

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