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Intrinsic noise of a superheated droplet detector for neutron background measurements in massively shielded facilities

机译:用于大型屏蔽设施中子本底测量的过热液滴检测器的固有噪声

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Superheated droplet detectors are a promising technique to the measurement of low-intensity neutron fields, as detectors can be rendered insensitive to minimum ionizing radiations. We report on the intrinsic neutron-induced signal of C2ClF5 devices fabricated by our group that originate from neutron- and alpha-emitting impurities in the detector constituents. The neutron background was calculated via Monte Carlo simulations using the MCNPX-PoliMi code in order to extract the recoil distributions following neutron interaction with the atoms of the superheated liquid. Various nuclear techniques were employed to characterise the detector materials with respect to source isotopes (238U, 232Th and 147Sm) for the normalisation of the simulations and also light elements (B, Li) having high (α, n) neutron production yields. We derived a background signal of ~10-3 cts/day in a 1 liter detector of 1-3 wt.% C2ClF5, corresponding to a detection limit in the order of 10-8 n cm-2s-1. Direct measurements in a massively shielded underground facility for dark matter search have confirmed this result. With the borosilicate detector containers found to be the dominant background source in current detectors, possibilities for further noise reduction by ~2 orders of magnitude based on selected container materials are discussed.
机译:过热液滴检测器是一种用于测量低强度中子场的有前途的技术,因为可使检测器对最小的电离辐射不敏感。我们报告了由我们的小组制造的C2ClF5器件的内在中子感应信号,该信号源自探测器成分中的中子和α发射杂质。中子本底是使用MCNPX-PoliMi代码通过Monte Carlo模拟计算得出的,目的是提取中子与过热液体原子相互作用后的反冲分布。各种核技术被用来相对于源同位素(238U,232Th和147Sm)表征检测器材料,以进行模拟归一化,以及具有高(α,n)中子产量的轻元素(B,Li)。我们在1-3 wt。%C2ClF5的1升检测器中得出了约10-3 cts /天的背景信号,对应于10-8 n cm-2s-1的检测极限。直接在大型屏蔽地下设施中进行暗物质搜索的测量结果证实了这一结果。硼硅酸盐探测器的容器被发现是当前探测器的主要背景源,因此讨论了根据所选的容器材料将噪声进一步降低约2个数量级的可能性。

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