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Experimental Investigation of Temperature Effects on Radiation Portal Monitor Performance

机译:温度对辐射门监控器性能影响的实验研究

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Radiation portal monitor (RPM) systems are deployed around the world in order to help detect and deter the movement of illicit nuclear material. Because these systems are often deployed in remote locations or on borders, they are exposed to and must tolerate a wide range of ambient temperature. Therefore, discovering temperature dependent behavior in RPM type detectors is increasingly important as more systems are deployed and the global political climate places a premium on ensuring that illicit trafficking of special nuclear material (SNM) and other radioactive material is detected. In this paper, results from an experimental investigation of the temperature dependence of two RPM detectors' behavior are presented. Four hypotheses are examined, and a discussion of the results is included as well. The results presented in this paper demonstrate that the root cause of these detectors' temperature dependence is the photomultiplier tubes. Furthermore, the results provide evidence that dark current formation in the photomultiplier tubes significantly impacts the background count rate of detectors, which in turn decreases the detectors sensitivity to low energy gamma sources such as SNM.
机译:辐射门户监控器(RPM)系统在世界范围内部署,以帮助检测和制止非法核材料的流动。由于这些系统通常部署在偏远地区或边界,因此它们暴露于环境中并且必须承受很大范围的环境温度。因此,随着更多系统的部署以及在全球政治气候中,确保在检测到特殊核材料(SNM)和其他放射性物质的非法贩运方面,发现RPM型探测器的温度依赖性行为变得越来越重要。在本文中,给出了对两个RPM检测器行为的温度依赖性进行实验研究的结果。研究了四个假设,并对结果进行了讨论。本文提出的结果表明,这些探测器对温度的依赖性的根本原因是光电倍增管。此外,结果提供了证据,表明在光电倍增管中形成暗电流会显着影响探测器的本底计数率,进而降低探测器对低能量伽玛源(如SNM)的灵敏度。

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