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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Digital pulse-shape discrimination applied to an ultra-low-background gas-proportional counting system: first results
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Digital pulse-shape discrimination applied to an ultra-low-background gas-proportional counting system: first results

机译:数字脉冲形状判别应用于超低背景气体比例计数系统:初步结果

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摘要

A new ultra-low-background proportional counter design was recently developed at Pacific Northwest National Laboratory (PNNL). This design, along with an ultra-low-background counting system which provides passive and active shielding with radon exclusion, has been developed to complement a new shallow underground laboratory (~ 30 m water-equivalent) constructed at PNNL. After these steps to mitigate dominant backgrounds (cosmic rays, external gamma-rays, radioactivity in materials), remaining background events do not exclusively arise from ionization of the proportional counter gas. Digital pulse-shape discrimination (PSD) is thus employed to further improve measurement sensitivity. In this work, a template shape is generated for each individual sample measurement of interest, a "self-calibrating" template. Differences in event topology can also cause differences in pulse shape. In this work, the temporal region analyzed for each event is refined to maximize background discrimination while avoiding unwanted sensitivity to event topology. This digital PSD method is applied to sample and background data, and initial measurement results from a biofuel methane sample are presented in the context of low-background measurements currently being developed.
机译:太平洋西北国家实验室(PNNL)最近开发了一种新的超低背景比例计数器设计。此设计与超低背景计数系统一起提供了passive气排除的被动和主动屏蔽功能,并已开发出来,以补充在PNNL新建的地下地下实验室(约30 m的水当量)。在执行这些步骤以减轻主要背景(宇宙射线,外部伽玛射线,材料中的放射性)之后,其余的背景事件并非仅由比例平衡气体的电离引起。因此,采用数字脉冲形状识别(PSD)来进一步提高测量灵敏度。在这项工作中,将为感兴趣的每个样本测量生成模板形状,即“自校准”模板。事件拓扑的差异也可能导致脉冲形状的差异。在这项工作中,为每个事件分析的时间区域都经过优化,以最大程度地区分背景,同时避免了对事件拓扑的不必要敏感性。这种数字PSD方法应用于样品和背景数据,并且在当前正在开发的低背景测量的背景下,呈现了生物燃料甲烷样品的初始测量结果。

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