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Surface background suppression in liquid argon dark matter detectors using a newly discovered time component of tetraphenyl-butadiene scintillation

机译:使用新发现的四苯基 - 丁二烯闪烁的新发现时间成分的液体氩气暗物质探测器的表面背景抑制

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Decays of radioisotopes on inner detector surfaces can pose a major background concern for the direct detection of dark matter. While these backgrounds are conventionally mitigated with position cuts, these cuts reduce the exposure of the detector by decreasing the sensitive mass, and uncertainty in position determination may make it impossible to adequately remove such events in certain detectors. In this paper, we provide a new technique for substantially reducing these surface backgrounds in liquid argon (LAr) detectors, independent of position cuts. These detectors typically use a coating of tetraphenyl-butadiene (TPB) on the inner surfaces as a wavelength shifter to convert vacuum ultraviolet (VUV) LAr scintillation light to the visible spectrum. We find that TPB scintillation contains a component with a previously unreported exceptionally long lifetime (~ms). We discovered that this component differs significantly in magnitude between alpha, beta, and VUVexcitation, which enables the use of pulse shape discrimination to suppress surface backgrounds by more than a factor of 103 with negligible loss of dark matter sensitivity. We also discuss how this technique can be extended beyond just LAr experiments.
机译:内部探测器表面上的放射性同位素衰减可以对直接检测暗物质的主要背景问题构成。虽然这些背景是常规减轻位置切口的虽然通过切割的位置减少,但是通过降低敏感质量来减少检测器的暴露,并且位置确定的不确定性可能使得不可能充分地去除某些检测器中的这种事件。在本文中,我们提供了一种用于在液体氩(LAR)探测器中基本上减少这些表面背景的新技术,与位置切割无关。这些探测器通常在内表面上使用四苯基 - 丁二烯(TPB)的涂层,作为波长移位器,以将真空紫外线(Vuv)Lar闪烁光转化为可见光谱。我们发现TPB闪烁包含一个具有先前未报告的分量,非常长的寿命(〜ms)。我们发现该组分在α,β和Vuvexcitation之间的幅度显着不同,这使得脉冲形状辨别能够抑制表面背景超过103的尺寸,并且忽略的暗物质敏感性损失可忽略不计。我们还讨论如何超越大实验。

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