论文标题
液体刻度检测器的完整光学模型
A complete optical model for liquid-scintillator detectors
论文作者
论文摘要
液体闪烁体(LS)广泛用于各种中微子振荡实验,尤其是反应堆中微子实验。已知光光子的复杂吸收和再发射过程是LS检测器的非线性和不均匀响应的重要来源。 LS中光传播的精确模拟非常需要建模检测器响应并减少系统误差。在本文中,我们开发了一种新型的光学模型,该模型可以完全处理LS组件的竞争性光子吸收和随后的重新排放过程。它允许直接插入LS组件的实验室测量,以建模任何LS组成。已经进行了广泛的测量,以获得该模型的基本光学参数。我们通过具有小LS体积的台面实验来验证模型。此外,我们证明,对于任何给定的检测器几何形状,该模型提供了优化LS配方以最大化光收集的能力。它对于设计基于LS的探测器并改善蒙特卡洛与数据之间的一致性是有价值的,以进行当前中微子实验。
Liquid scintillator (LS) is widely used in various neutrino oscillation experiments, in particular, the reactor neutrino experiments. The complex absorption and re-emission processes of optical photons are known to be an important source of the non-linear and non-uniform response of LS detectors. Precise simulation of light propagation in LS is highly desirable to model the detector response and reduce the systematic errors. In this paper, we develop a novel optical model which can completely deal with the competitive photon absorption and subsequent re-emission processes of the LS components. It allows to directly plug in the laboratory measurements of the LS components to model any LS composition. Extensive measurements have been performed to obtain the essential optical parameters for this model. We validate the model with a bench-top experiment featuring a small LS volume. Furthermore, we demonstrate that for any given detector geometry, this model provides the capability of optimizing the LS recipe to maximize the light collection. It is valuable for designing future LS-based detectors and improving the agreement between Monte Carlo and data for current neutrino experiments.