论文标题

光电倍增管的新光学模型

A New Optical Model for Photomultiplier Tubes

论文作者

Wang, Yaoguang, Cao, Guofu, Wen, Liangjian, Wang, Yifang

论文摘要

在许多应用中构建光电倍增管(PMT)的精确光学模型至关重要,以描述其工作介质中PMTS的光子检测效率(PDE)的角度和光谱响应。在这项研究中,我们提出了一个新的PMT光学模型,以根据光学理论和基于GEANT4的仿真工具包来描述与PMT窗口的光相互作用和PMT内部的光学过程。所提出的模型建立了PDE与PDE所依赖的基本过程之间的关系。该模型还提供了一种工具,可以将一种在一种工作介质(例如空气)中测量的PDE转换为其他媒体(例如水,液体闪烁体等)的PDE。使用两个20“ MCP-PMT和一个20”驱动器PMT,我们展示了一个完整的程序,以从实验数据中获取模型中使用的关键参数,例如三个PMT的抗反射涂层的光学特性和光电阴极。提出的模型可以有效地重现PMT量子效率的角度响应,即使在模型中假定理想的均匀的光电阴道。有趣的是,与检测器设计阶段相比,在许多基于液体闪烁体的中微子探测器的实验数据中,在许多基于液体闪烁体的中微子探测器的实验数据中观察到的光产量过剩的水平相似($ 20 \%\ sim30 \%$),相比之下。但是,这种过剩从未被解释过,拟议的PMT模型为其提供了一个很好的解释,这突出了其检测器模拟中使用的PMT模型的不完美。

It is critical to construct an accurate optical model of photomultiplier tubes (PMTs) in many applications to describe the angular and spectral responses of the photon detection efficiency (PDE) of the PMTs in their working media. In this study, we propose a new PMT optical model to describe both light interactions with the PMT window and optical processes inside PMTs with reasonable accuracy based on the optics theory and a GEANT4-based simulation toolkit. The proposed model builds a relationship between the PDE and the underlying processes that the PDE relies on. This model also provides a tool to transform the PDE measured in one working medium (like air) to the PDE in other media (like water, liquid scintillator, etc). Using two 20" MCP-PMTs and one 20" dynode PMT, we demonstrate a complete procedure to obtain the key parameters used in the model from experimental data, such as the optical properties of the antireflective coating and photocathode of the three PMTs. The proposed model can effectively reproduce the angular responses of the quantum efficiency of PMTs, even though an ideally uniform photocathode is assumed in the model. Interestingly, the proposed model predicts a similar level ($20\%\sim30\%$) of light yield excess observed in the experimental data of many liquid scintillator-based neutrino detectors, compared with that predicted at the stage of detector design. However, this excess has never been explained, and the proposed PMT model provides a good explanation for it, which highlights the imperfections of PMT models used in their detector simulations.

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