论文标题

开发基于有机塑料闪烁体在亚克尔文温度下运行的基于有机塑料闪烁体的否决权

Development of an Organic Plastic Scintillator based Muon Veto Operating at Sub-Kelvin Temperatures for the NUCLEUS Experiment

论文作者

Erhart, Andreas, Wagner, Victoria, Klinkenberg, Ludwig, Lasserre, Thierry, Lhuillier, David, Nones, Claudia, Rogly, Rudolph, Savu, Vladimir, Vivier, Matthieu

论文摘要

核实验旨在使用低温量热量计测量核反应堆抗神经酮的相干弹性散射。在3m.w.e的覆盖范围内运行,Muon引起的背景预计将是主导的。因此,必须开发有效的雄性否决权,检测效率超过99%。这将通过塑料闪烁板面板的紧凑立方体组装在核中实现。为了防止一个大型的非屏蔽区域,低温恒温器与屏蔽布置相交而不不必要地增加诱导的检测器的死时间,已经研究了一个新颖的概念,其中具有基于塑料闪烁的基于塑料闪烁体的活性muon否决,在子kelvin温度下在核中核cryostat中运行。对这种低温muon否决探测器的关键物理方面的验证导致首次报道的测量有机塑料闪光灯在亚克尔文温度下。在这些温度下,有机塑料闪烁体的主要闪烁过程的功能已得到证实。根据这些发现,已经开发了配备波长移动纤维的圆盘形塑料闪烁体和硅光电倍增体,以指导和检测闪烁光。核低温兆源将是第一个在亚克尔文温度下操作的同类产品。

The NUCLEUS experiment aims at measuring the coherent elastic scattering of nuclear reactor antineutrinos off nuclei using cryogenic calorimeters. Operating at an overburden of 3m.w.e., muon-induced backgrounds are expected to be dominant. It is therefore essential to develop an efficient muon veto, with a detection efficiency of more than 99%. This will be realized in NUCLEUS through a compact cube assembly of plastic scintillator panels. In order to prevent a large unshielded area where the cryostat intersects the shielding arrangement without unnecessarily increasing the induced detector dead time, a novel concept has been investigated, featuring a plastic scintillator based active muon veto operating inside the NUCLEUS cryostat at sub-Kelvin temperatures. The verification of the key physical aspects of this cryogenic muon veto detector led to the first reported measurements of organic plastic scintillators at sub-Kelvin temperatures. The functionality of the principal scintillation process of organic plastic scintillators at these temperatures has been confirmed. On the basis of these findings, a disc-shape plastic scintillator equipped with wavelength shifting fibers and a silicon photomultiplier to guide and detect the scintillation light has been developed. The NUCLEUS cryogenic muon veto will be the first of its kind to be operated at sub-Kelvin temperatures.

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