首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Responses of conventional and extended-range neutron detectors in mixed radiation fields around a 150-MeV electron LINAC
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Responses of conventional and extended-range neutron detectors in mixed radiation fields around a 150-MeV electron LINAC

机译:常规和中程中子探测器在150 MeV电子直线加速器周围混合辐射场中的响应

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摘要

This study analyzed the responses of two types of neutron detector in mixed gamma-ray and neutron radiation fields around a 150-MeV electron linear accelerator (LINAC). The detectors were self-assembled, high efficiency, and designed in two configurations: (1) a conventional moderated-type neutron detector based on a large cylindrical He-3 proportional counter; and (2) an extended-range version with an embedded layer of lead in the moderator to increase the detector's sensitivity to high-energy neutrons. Two sets of the detectors were used to measure neutrons at the downstream and lateral locations simultaneously, where the radiation fields differed considerably in intensities and spectra of gamma rays and neutrons. Analyzing the detector responses through a comparison between calculations and measurements indicated that not only neutrons but also high-energy gamma rays ( > 5 MeV) triggered the detectors because of photoneutrons produced in the detector materials. In the lateral direction, the contribution of photoneutrons to both detectors was negligible. Downstream of the LINAC, where high-energy photons were abundant, photoneutrons contributed approximately 6% of the response of the conventional neutron detector; however, almost 50% of the registered counts of the extended-range neutron detector were from photoneutrons because of the presence of the detector rather than the effect of the neutron field. Dose readings delivered by extended-range neutron detectors should be interpreted cautiously when used in radiation fields containing a mixture of neutrons and high-energy gamma rays.
机译:这项研究分析了两种中子探测器在150 MeV电子线性加速器(LINAC)周围的混合伽马射线和中子辐射场中的响应。这些探测器是自组装的,效率很高,设计有两种配置:(1)基于大型圆柱He-3比例计数器的常规中型中子探测器; (2)在减速器中具有嵌入式铅层的扩展范围版本,以提高探测器对高能中子的灵敏度。两组检测器用于同时测量下游和横向位置的中子,在这些位置,辐射场的强度和伽玛射线和中子的光谱差异很大。通过计算和测量之间的比较分析探测器的响应,表明不仅探测器中子,而且由于探测器材料中产生的光中子,高能伽马射线(> 5 MeV)也触发了探测器。在横向方向上,光中子对两个探测器的贡献可忽略不计。在高能量光子丰富的LINAC的下游,光中子贡献了传统中子探测器响应的6%。但是,由于中子探测器的存在,而不是中子场的影响,扩大范围的中子探测器的注册计数几乎有50%来自光中子。在包含中子和高能伽马射线混合物的辐射场中使用时,应谨慎解释大范围中子探测器发出的剂量读数。

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