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Development of a thick gas electron multiplier-based beta-ray detector

机译:基于气体电子倍增器的厚β射线探测器的研制

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A new beta-ray detector using Thick Gas Electron Multiplier (THGEM) technology is presented. Traditional proportional counters have been considered the standard for many decades for radiation contamination monitoring. However, it has always been challenging to detect low energy beta-emitters like ~3H and ~(14)C. In order to extend the low energy cutoff of these beta particles, it is important to keep the electron multiplication gain as high as possible. To accomplish this goal, we have developed a new gaseous beta-ray detector using THGEMs. Founded on previous THGEM avalanche simulations [1] and predecessor detectors, a prototype THGEM beta-ray detector was designed and fabricated. Its signal performance, effective gain and gain stability were comprehensively studied for single and double-THGEM configurations using an alpha source. The response of the detector to beta-rays was measured for various operating conditions and compared with MCNP6 Monte Carlo simulations.
机译:提出了一种使用厚气体电子倍增器(THGEM)技术的新型β射线探测器。数十年来,传统的比例计数器一直被视为辐射污染监测的标准。但是,检测〜3H和〜(14)C之类的低能β-发射极始终具有挑战性。为了延长这些β粒子的低能级截止,重要的是要保持尽可能高的电子倍增增益。为了实现这一目标,我们开发了一种使用THGEM的新型气态β射线探测器。基于先前的THGEM雪崩模拟[1]和先前的探测器,设计并制造了THGEMβ射线探测器原型。使用alpha信号源对单THGEM和双THGEM配置的信号性能,有效增益和增益稳定性进行了全面研究。在各种操作条件下测量了探测器对β射线的响应,并与MCNP6蒙特卡洛模拟进行了比较。

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