论文标题

Gemse:一个低背景设施,用于中等岩石的伽马光谱法

GeMSE: a Low-Background Facility for Gamma-Spectrometry at Moderate Rock Overburden

论文作者

García, Diego Ramírez, Baur, Daniel, Grigat, Jaron, Hofmann, Beda A., Lindemann, Sebastian, Masson, Darryl, Schumann, Marc, von Sivers, Moritz, Toschi, Francesco

论文摘要

GEMSE(锗材料和陨石筛选实验)设施在地下实验室中经营一个低背的HPGE晶体,其中等岩石覆盖层为620 $ \,$ M.W.E。在瑞士。它已被优化用于连续远程操作。多层被动屏蔽,哑光否决权和测量腔内内部的一条煮沸的氮清除线最大程度地减少了仪器的背景速率,该仪器的背景速率降低了33%至(164 $ \ pm 2)$ \,$ cunts/day/day/day(100-2700 $ \,$ kev,$ kev)。这与基于短暂同位素的预期衰减的预测一致。通过检测器的精确模拟建模的已知背景组件的拟合表明,GEMSE背景现在以Muon为主。我们还提出了更新的更新,以对筛选样品进行更准确的检测效率计算:精确确定了晶体外部死层的厚度,现在可以轻松地计算出任何样品几何形状的效率。通过确定$^{40} $ k内容在筛选复杂形对象:香蕉时,该功能的优点是通过确定。

The GeMSE (Germanium Material and meteorite Screening Experiment) facility operates a low-background HPGe crystal in an underground laboratory with a moderate rock overburden of 620$\,$m.w.e. in Switzerland. It has been optimized for continuous remote operation. A multi-layer passive shielding, a muon veto, and a boil-off nitrogen purge line inside the measurement cavity minimize the instrument's background rate, which decreased by 33% to (164$\pm$2)$\,$counts/day (100-2700$\,$keV) after five years of underground operation. This agrees with the prediction based on the expected decay of short-lived isotopes. A fit to the known background components, modeled via a precise simulation of the detector, shows that the GeMSE background is now muon-dominated. We also present updates towards a more accurate detection efficiency calculation for the screened samples: the thickness of the crystal's outer dead-layer is precisely determined and the efficiency can now be easily calculated for any sample geometry. The advantage of this feature is showcased via the determination of the $^{40}$K content in the screening of a complex-shaped object: a banana.

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