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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Investigation of instabilities of photomultiplier tubes for multi-element detector systems
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Investigation of instabilities of photomultiplier tubes for multi-element detector systems

机译:多元素探测器系统的光电倍增管稳定性研究

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摘要

This paper presents an investigation into response of instabilities of EJ-309 liquid scintillator detectors. A brief review of common instabilities associated with the photomultiplier tubes (PMTs) is presented. The energy response, energy linearity and warm-up duration of sixteen EJ-309 detectors coupled to PMTs tested is presented. A single-channel mixed-field analyser digitiser system was used for data acquisition. Furthermore, timing information of the common instability behaviours is presented alongside suggestions on how to correct for such instabilities. The results show that a single-energy energy calibration is sufficient to ensure energy linearity; the detectors must be warmed-up by ~45 minutes before stable response is achieved; the re-warm-up duration depends on the duration of the high voltage supplied to the PMT being switched off. The results indicate that the PMTs take approximately 2 hours to reach "cold" state, where a full warm-up duration must be applied. The reported instability effects will be taken into account when developing a sophisticated auto-calibration methodology for a multi-element scintillator detector system.
机译:本文介绍了EJ-309液体闪烁体探测器稳定性响应的调查。介绍了对与光电倍增管(PMT)相关的常见不稳定性的简要审查。介绍了耦合到PMT的16 eJ-309探测器的能量响应,能量线性和预热持续时间。单通道混合场分析仪DigIender系统用于数据采集。此外,常见的不稳定性行为的时序信息与关于如何纠正此类不稳定性的建议一起呈现。结果表明,单能量校准足以确保能量线性;在实现稳定响应之前,探测器必须在〜45分钟内加热;重新预热持续时间取决于提供给关闭PMT的高电压的持续时间。结果表明,PMT大约需要2小时才能达到“冷”状态,其中必须应用完全预热持续时间。在为多元素闪烁器检测器系统开发复杂的自动校准方法时,将考虑报告的不稳定效果。

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