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Multi-layer scintillation detector for the MOON double beta decay experiment: Scintillation photon responses studied by a prototype detector MOON-1

机译:用于MOON双β衰变实验的多层闪烁探测器:由原型探测器MOON-1研究的闪烁光子响应

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摘要

An ensemble of multi-layer scintillators is discussed as an option of the high-sensitivity detector Mo Observatory Of Neutrinos (MOON) for spectroscopic measurements of neutrino-less double beta decays. A prototype detector MOON-1, which consists of 6 layer plastic-scintillator plates, was built to study the sensitivity of the MOON-type detector. The scintillation photon collection and the energy resolution, which are key elements for the high-sensitivity experiments, are found to be 1835+/-30 photo-electrons for 976 keV electrons and sigma = 2.9+/-0.1% (dE/E = 6.8+/-0.3 % in FWHM) at the Qbb ~ 3 MeV region, respectively. The multi-layer plastic-scintillator structure with good energy resolution as well as good background suppression of beta-gamma rays is crucial for the MOON-type detector to achieve the inverted hierarchy neutrino mass sensitivity.
机译:作为高灵敏度探测器中微子Mo天文台(MOON)的一种选择,讨论了多层闪烁体的集合,用于无中微子双β衰变的光谱测量。构建了一个由6层塑料闪烁体板组成的原型探测器MOON-1,以研究MOON型探测器的灵敏度。闪烁光子的收集和能量分辨率是高灵敏度实验的关键要素,被发现是976 keV电子的1835 +/- 30光电子,σ= 2.9 +/- 0.1%(dE / E =在Qbb〜3 MeV区域分别为FWHM的6.8 +/- 0.3%。多层塑料闪烁体结构具有良好的能量分辨率以及对β-γ射线的良好背景抑制,对于MOON型探测器实现反向中微子质量灵敏度至关重要。

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