论文标题

新型Cherenkov闪烁检测器的重建算法

Reconstruction Algorithm for a Novel Cherenkov Scintillation Detector

论文作者

Luo, Wentai, Liu, Qian, Zheng, Yangheng, Wang, Zhe, Chen, Shaomin

论文摘要

对于将来的MEV规模中微子实验,Cherenkov闪烁检测器CSD特别感兴趣,因为它有能力重建带电颗粒的能量和方向。一种新的目标材料,慢速液体闪烁体,可用于分离Cherenkov和闪烁灯的Slowls,是中微子探测器的选择之一。使用基于GEANT4的蒙特卡洛软件模拟了数百吨球形CSD,该软件可以处理MEV颗粒和光学光子的微观过程,以及用于光电培养基,PMT和读取电子设备的功能。模拟并研究了十二个慢速样品,以覆盖各种闪烁的闪光灯产量和闪烁发射时间常数。基于对信号过程的详细知识,构建了简化的功能,以预测PMT上的电荷和时间信号,以实现带电粒子的能量,方向和位置的有效重建。为这些样品提供了慢速重建的性能,包括所得能量,角和位置分辨率以及粒子识别能力。表现对闪烁光收益率和发射时间常数的依赖性被理解。这项研究将是未来MEV规模中微子CSD设计的指南,并为感兴趣的物理目标慢慢开发开发。

For future MeV-scale neutrino experiments, a Cherenkov scintillation detector, CSD, is of particular interest for its capability to reconstruct both energy and direction for charged particles. A type of new target material, slow liquid scintillator, SlowLS, which can be used to separate Cherenkov and scintillation lights, is one of the options for the neutrino detectors. A multi-hundred ton spherical CSD is simulated using a Geant4-based Monte Carlo software, which handles the detailed the micro processes of MeV particles and optical photons and the functions for photomultiplier, PMT, and readout electronics. Twelve SlowLS samples are simulated and studied to cover a wide range of scintillation light yields and scintillation emission time constants. Based on the detailed knowledge of the signal processes, simplified functions are constructed to predict the charge and time signals on the PMTs to fulfill an efficient reconstruction for the energy, direction, and position of charged particles. The performance of the SlowLS reconstruction, including the resulting energy, angular, and position resolution, and particle identification capability, is presented for these samples. The dependence of the performance on the scintillation light yield and emission time constants is understood. This study will be a guideline for future MeV-scale neutrino CSD design and SlowLS development for the interested physics goals.

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