论文标题

在经过全面反射的液体刻度探测器中重建点事件

Reconstruction of Point Events in Liquid-Scintillator Detectors Subjected to Total Reflection

论文作者

Dou, Wei, Xu, Benda, Zhou, Jianfeng, Wang, Zhe, Chen, Shaomin

论文摘要

外水缓冲液是屏蔽液体阶段中微子探测器外部辐射背景的经济选择。但是,媒体边界上闪烁光的结果总反射给检测器光学带来了额外的复杂性。本文通过研究总反应如何使光子传播并降解重建方式来开发精确的检测器反应模型。我们首先通过回归参数化检测器响应,在总反射区域中提供无偏的能量和顶点重建,同时保持参数的数量控制。从jin的原型中的事件变性的经验中,我们将根本原因确定为重建似然函数中的多模式,这是由缓冲液,检测器量表和PMT覆盖率的折射率确定的。为了避免多模式,我们根据相邻PMT之间的预期光电计数比率提出了一个直接的标准。该标准将用于通过确保事件重建的有效性来确保未来的液体阶段探测器的成功。

The outer water buffer is an economic option to shield the external radiative backgrounds for liquid-scintillator neutrino detectors. However, the consequential total reflection of scintillation light at the media boundary introduces extra complexity to the detector optics. This paper develops a precise detector-response model by investigating how total reflection complicates photon propagation and degrades reconstruction. We first parameterize the detector response by regression, providing an unbiased energy and vertex reconstruction in the total reflection region while keeping the number of parameters under control. From the experience of event degeneracy at the Jinping prototype, we then identify the root cause as the multimodality in the reconstruction likelihood function, determined by the refractive index of the buffer, detector scale and PMT coverage. To avoid multimodality, we propose a straightforward criterion based on the expected photo-electron-count ratios between neighboring PMTs. The criterion will be used to ensure success in future liquid-scintillator detectors by guaranteeing the effectiveness of event reconstruction.

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