首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Single photon detection with SiPMs irradiated up to 10~(14) cm~(-2) 1-MeV-equivalent neutron fluence
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Single photon detection with SiPMs irradiated up to 10~(14) cm~(-2) 1-MeV-equivalent neutron fluence

机译:用SiPM进行单光子检测,辐照剂量高达10〜(14)cm〜(-2)1-MeV等效中子注量

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摘要

Silicon photomultipliers (SiPM) are solid state light detectors with sensitivity to single photons. Their use in high energy physics experiments, and in particular in ring imaging Cherenkov (RICH) detectors, is hindered by their poor tolerance to radiation. At room temperature the large increase in dark count rate makes single photon detection practically impossible already at 10(11) cm(-2) 1-MeV-equivalent neutron fluence. The neutron fluences foreseen by many subdetectors to be operated at the high luminosity LHC range up to 10(14) cm(-2) 1-MeV-equivalent. In this paper we present the effects of such high neutron fluences on Hamamatsu and SensL SiPMs of different cell size. The advantage of annealing at high temperature (up to 175 degrees C) is discussed. We demonstrate that, after annealing, operation at the single photon level with a SiPM irradiated up to 10(14) cm(-2) 1-MeV-equivalent neutron fluence is possible at cryogenic temperature (77 K) with a dark count rate below 1 kHz.
机译:硅光电倍增管(SiPM)是对单光子敏感的固态光检测器。它们在高能物理实验中的使用,尤其是在环形成像Cherenkov(RICH)检测器中的使用,由于其对辐射的耐受性差而受到阻碍。在室温下,暗计数率的大幅提高使得单光子检测几乎不可能以10(11)cm(-2)1-MeV等效中子注量进行。许多子探测器预见到的中子注量将在高达10(14)cm(-2)1-MeV的高亮度LHC范围内运行。在本文中,我们介绍了如此高的中子注量对不同细胞大小的Hamamatsu和SensL SiPM的影响。讨论了在高温(高达175摄氏度)下退火的优势。我们证明,退火后,可以在低温(77 K)下以暗计数率低于10(14)cm(-2)1-MeV等效中子注量的SiPM进行单光子水平的操作1 kHz。

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