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High Sensitivity Passive Radon Detector for Measuring Radon in Low-background Underground Nuclear/Particle Physics Laboratories

机译:高灵敏度无源氡探测器测量低背景地下核/粒子物理实验室中的氡

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Strict radon control is highly desirable in the deep underground low background nuclear/particle physics facilities. Ideally, 222Rn levels should be kept below 1 Bq.m-3 to reduce the undesirable background contribution of radiation by 222Rn and its progeny. So far the commercially available radon monitors cannot provide sensitivity in this range and unique 222Rn detection systems should be constructed. In this report we propose highly sensitive passive 222Rn monitor with high total detection area and low intrinsic background that can reach the required sensitivity. It consists of a large number of "detector elements". One detector element consists of two DVD halves that face a radon absorber (Makrofol N foils) with their inner surface. The polycarbonate material of the commercial DVDs has very good track etch properties and the intrinsic background of their inner surface is very low (1.1 ± 0.3 cm-3) and can be further reduced by thermal annealing and special counting procedures that eliminate surface defects. The presented pilot experimental results and sensitivity assessment show that with the proposed monitor quantitative 222Rn measurements are possible at a level of 20 mBq.m-3 or less. The main application of such radon monitor is foreseen for the purposes of radon control in the unique very low-background deep underground nuclear/particle physics facilities, where 222Rn is mitigated to sub Bq.m-3 levels.
机译:严格控制氡是在地下深处的低本底核/粒子物理设施非常可取的。理想的情况下, 222 氡水平应保持低于1个Bq.m -3 通过减少辐射的不希望的背景贡献 222 氡及其子体。到目前为止,市售氡显示器无法提供在此范围内的和独特的敏感性 222 RN检测系统应当被构造。在这份报告中,我们提出了非常敏感的被动 222 具有高的总检测区域和低固有背景RN监视器,可以达到所要求的灵敏度。它由大量的“检测元件”的。一个检测器元件包括面对一个氡吸收剂(MAKROFOLÑ箔)与它们的内表面的两个DVD半部。商业DVD的聚碳酸酯材料具有很好的径迹蚀刻性能和它们的内表面的固有背景非常低(1.1±0.3厘米 -3 ),并且可以通过热退火和消除表面缺陷特别计数程序被进一步减小。所提出的试点实验结果和敏感性评估表明,所提出的显示器数量 222 氡测量可以在20 mBq.m水平 -3 或更少。这种测氡仪的主要应用是在独特的非常低的背景预见的氡控制的目的,深的地下核/粒子物理设施,其中 222 RN是减轻子Bq.m -3 水平。

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