利用再循环系统中的静电室进行超灵敏氡测定

IF 1.4 3区 物理与天体物理 Q3 INSTRUMENTS & INSTRUMENTATION
A. Anker , P.A. Breur , B. Mong , P. Acharya , A. Amy , E. Angelico , I.J. Arnquist , A. Atencio , J. Bane , V. Belov , E.P. Bernard , T. Bhatta , A. Bolotnikov , J. Breslin , J.P. Brodsky , S. Bron , E. Brown , T. Brunner , B. Burnell , E. Caden , J. Zhao
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引用次数: 0

摘要

罕见事件搜索,如中微子双β衰变和弱相互作用大质量粒子探测需要超低背景探测器。氡污染是这些实验的一个重大挑战,这些实验采用高度敏感的氡测定技术来识别和选择低排放材料。本工作介绍了超灵敏静电室(ESC)仪器的发展,设计用于测量再循环气体回路中的氡辐射,为未来的低背景实验做准备。与传统的分离发射和检测步骤的方法不同,该系统允许连续的氡传输和检测。这可以通过定制的再循环泵实现。开发了一个基于python的分析框架PyDAn,用于处理和拟合随时间变化的氡衰变数据。给出了用该仪器测量的各种材料的氡辐射率。已知活度的氡源提供绝对校准,使统计限制的最小可检测活度为20 μBq。这些装置是低背景粒子物理实验中筛选材料的有力工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultra-sensitive radon assay using an electrostatic chamber in a recirculating system
Rare event searches such as neutrinoless double beta decay and Weakly Interacting Massive Particle detection require ultra-low background detectors. Radon contamination is a significant challenge for these experiments, which employ highly sensitive radon assay techniques to identify and select low-emission materials. This work presents the development of ultra-sensitive electrostatic chamber (ESC) instruments designed to measure radon emanation in a recirculating gas loop, for future lower background experiments. Unlike traditional methods that separate emanation and detection steps, this system allows continuous radon transport and detection. This is made possible with a custom-built recirculation pump. A Python-based analysis framework, PyDAn, was developed to process and fit time-dependent radon decay data. Radon emanation rates are given for various materials measured with this instrument. A radon source of known activity provides an absolute calibration, enabling statistically-limited minimal detectable activities of 20 μBq. These devices are powerful tools for screening materials in the development of low-background particle physics experiments.
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来源期刊
CiteScore
3.20
自引率
21.40%
发文量
787
审稿时长
1 months
期刊介绍: Section A of Nuclear Instruments and Methods in Physics Research publishes papers on design, manufacturing and performance of scientific instruments with an emphasis on large scale facilities. This includes the development of particle accelerators, ion sources, beam transport systems and target arrangements as well as the use of secondary phenomena such as synchrotron radiation and free electron lasers. It also includes all types of instrumentation for the detection and spectrometry of radiations from high energy processes and nuclear decays, as well as instrumentation for experiments at nuclear reactors. Specialized electronics for nuclear and other types of spectrometry as well as computerization of measurements and control systems in this area also find their place in the A section. Theoretical as well as experimental papers are accepted.
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