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Supplementary Materials of Scintillation Properties and Pulse Shape Discrimination Capability of CLLBC at Ce Concentration

Citation Author(s):
Zhuochen Cai
Xianggang Zhang
Ziang Yin
Shixuan Guo
Yi Liu
Jinbo Liu
Zhe Kang
Qinghua Zhao
Fa Luo
Shitao Xiong
Shusheng Wang
Xuxin He
Aizhong Yue
Tao Wang
Submitted by:
Tao Wang
Last updated:
DOI:
10.21227/8d6y-cx54
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Abstract

This supplementary document provides a comprehensive explanation of the coupled rate and transport model used to calculate the scintillation dynamics in Ce-doped CLLBC crystals. The model includes a set of partial differential equations that describe the behavior of charge carriers, excitons, and their interactions within the crystal lattice. These equations account for key processes such as diffusion, trapping, recombination, and nonlinear quenching. Details on parameter selection, including energy loss rates for neutron and gamma excitation, are presented. The calculations reveal how variations in Ce concentration impact neutron-gamma discrimination by altering excited-state dynamics, providing theoretical support for optimizing scintillator performance in dual-mode detection.

 

Instructions:

The supplementary materials primarily focus on providing an in-depth interpretation of the coupled rate-transport equations used in the main study. As such, they do not contain raw datasets or structured data that require documentation or data dictionaries. Instead, they offer theoretical insights and detailed parameters that support the application of these equations.

 

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