Study on cosmic test and QC method of high-rate MRPC for CBM-TOF

P. Lyu, D. Han,Y. Wang,Q. Zhang, B. Guo,F. Wang,Y. Yu,X. Chen, Y. Li,N. Herrmann,I. Deppner, C. Simon, P. Weidenkaff,P.-A. Loizeau,J. Frühauf

JOURNAL OF INSTRUMENTATION(2019)

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摘要
The CBM (Compressed Baryonic Matter) experiment constructed at FAIR (Facility for Anti-proton and Ion Research) at GSI, Darmstadt, Germany, will provide unique research opportunities to explore the phase diagram of nuclear matter. As one of the core detectors in the CBM experiment, the Time-of-Flight (TOF) system applies the MRPC (Multi-gap Resistive Plate Chamber) for a precise particle identification for all the incident charged hadrons. The CBM-TOF will be operated at an ion beam intensity up to 10(9)/s, which means the particle fluxes on the TOF wall can reach an unprecedentedly high rate of 30 kHz/cm(2). Almost half of the MRPC counters are from the inner region of the TOF wall, and they will be assembled with the low-resistive glass which enables them to work under such high rate. This is the first time of the large scale application of the low-resistive glass MRPCs into the nuclear and high-energy physics experiments. It is especially important to study on the production and test procedure to keep the good performance of all these counters. For this mass production, we have developed a set of specified manufacturing procedure and quality control method to guarantee the performance of all the counters. A newly developed method to check the uniformity of the gas gap with help of the projection imaging technique has been first applied. Until now, 73 MRPCs have been produced for the eTOF project in the BESII detector upgrade at STAR and the TOF system of mini-CBM. Tested by cosmic ray in a system based on TRB, all the produced counters show a stable performance of above 95% efficiency and below 90 ps time resolution. The study on the mass production of the low-resistive plate chamber will provide experience for wide application of MRPC into the high rate experiments in the future. In this paper, the counter design, manufacturing procedures, quality control methods and test results for this MRPC counter are described in a detailed way.
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关键词
Instrumentation and methods for time-of-flight (TOF) spectroscopy,Performance of High Energy Physics Detectors,Resistive-plate chambers
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