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Modeling impurity concentrations in liquid argon detectors

机译:液体氩检测器中的杂质浓度建模

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摘要

Impurities in noble liquid detectors used for neutrino and dark matter experiments can significantly impact the quality of data. We present an experimentally verified model for describing the dynamics of impurity distributions in liquid argon (LAr) detectors. The model considers sources, sinks, and transport of impurities within and between the gas and liquid argon phases. Measurements of oxygen concentrations in a 20-L LAr multi-purpose test stand are compared to calculations made with this model to show that an accurate description of the concentrations under various operational conditions can be obtained. A result of this analysis is a determination of Henry's coefficient for oxygen in LAr. These calculations also show that some processes have small effects on the impurity dynamics and excluding them yields a solution as a sum of two exponential terms. This solution provides a simple way to extract Henry's coefficient with negligible approximation error. It is applied to the data and the Henry's coefficient for oxygen in LAr is obtained as 0.84_(-0.05)~(+0.09), consistent with literature results. Based on the analysis of the data with the model, we further suggest that, for a large liquid argon detector, barriers to flow ("baffles") installed in the gas phase to restrict flow can help reduce the ultimate impurity concentration in the LAr.
机译:用于中微子和暗物质实验的贵液检测器中的杂质可以显着影响数据质量。我们提出了一种用于描述液体氩(LAR)探测器中杂质分布动态的实验验证模型。该模型考虑了气体和液体氩相之间和之间的杂质的来源,水槽和运输。将20 -L LAR多功能测试支架中的氧浓度的测量与用该模型进行进行比较,以表明可以获得在各种操作条件下对浓度的准确描述。该分析的结果是测定Henry氧气的氧气系数。这些计算还表明,一些过程对杂质动态具有小的影响,并且不包括它们将解决方案作为两种指数术语的总和产生。该解决方案提供了一种简单的方法来提取亨利的系数,近似近似误差。它应用于数据,并获得亨利的氧气系数,获得为0.84 _( - 0.05)〜(+0.09),与文献结果一致。基于对模型数据的分析,我们进一步建议,对于大型液体氩检测器,流动的屏障(“挡板”)安装在气相中以限制流动的情况有助于降低LAR中的最终杂质浓度。

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