Review of thermal neutron scintillators: Evaluation metrics and future prospects for demanding applications

Q2 Engineering Optical Materials: X Pub Date : 2024-10-16 DOI:10.1016/j.omx.2024.100373
G. Jeff Sykora, Sarah E. Mann, Giacomo Mauri, Erik M. Schooneveld, Nigel J. Rhodes
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Abstract

Neutron applications are progressing rapidly, requiring detectors to meet increasingly rigorous criteria. Specifications such as high neutron counting rates, fast timing resolution and low background have a significant impact on choice of scintillator and how scintillators are evaluated. This work considers detector requirements for neutron scattering instruments that are becoming more stringent as the sources and scattering technologies continue to improve. Meanwhile, both prominent scintillators used for neutron scattering detectors, ZnS:Ag/6LiF and GS-glass, remain stagnant. While these scintillators have been suitable for many years, they are becoming a limiting factor for neutron scattering instruments. ZnS:Ag is inhibiting count rate capability and GS-glass is too gamma sensitive so alternatives need to be found. A brief explanation of neutron scattering, its detector requirements and how those relate to scintillator properties will be discussed. Furthermore, this work explains how standard characterization methods and reporting of scintillation properties are not entirely suitable for high count rate, low background applications like neutron scattering. As a result, modifications to characterization of gamma discrimination, light output, and decay kinetics are suggested. Additional steps are suggested including neutron activation and a more appropriate assessment of count rate capability. A non-exhaustive set of 6Li containing neutron sensitive scintillators including ZnS:Ag/6LiF, GS20 glass, ZnO:Zn/6LiF, Cs6LiYCl:Ce, 6LiI:Eu, 6LiI:Ce, 6LiCaAlF:Eu, LiCaAlF:Ce, transparent rubber sheet (TRUST) 6LiCaAlF:Eu, TRUST 6LiCaAlF:Eu with added fluorophore and EJ-270 (6Li containing plastic) are reviewed and studied from this different perspective. Finally, new scintillator developments relevant to high count rate, low background applications are discussed.
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热中子闪烁体回顾:高要求应用的评估指标和未来前景
中子应用发展迅速,要求探测器满足越来越严格的标准。高中子计数率、快速定时分辨率和低本底等规格对闪烁体的选择和闪烁体的评估方式有重大影响。随着中子源和散射技术的不断改进,中子散射仪器对探测器的要求也越来越严格。与此同时,用于中子散射探测器的两种主要闪烁体--ZnS:Ag/6LiF 和 GS-玻璃--仍然停滞不前。虽然这些闪烁体已适用多年,但它们正成为中子散射仪器的限制因素。ZnS:Ag抑制了计数率能力,GS-玻璃对伽马射线过于敏感,因此需要找到替代品。本文将简要解释中子散射、其探测器要求以及这些要求与闪烁体特性的关系。此外,这项工作还将解释闪烁特性的标准鉴定方法和报告如何不完全适用于中子散射这样的高计数率、低背景应用。因此,建议修改伽马辨别、光输出和衰变动力学的表征方法。还建议采取其他步骤,包括中子活化和对计数率能力进行更适当的评估。含有 6Li 的中子敏感闪烁体包括 ZnS:Ag/6LiF、GS20 玻璃、ZnO:Zn/6LiF、Cs6LiYCl:Ce、6LiI:Eu、6LiI:Ce、6LiCaAlF:Eu、LiCaAlF:Ce、6LiCaAlF:Eu 透明橡胶板 (TRUST)、添加了荧光体的 6LiCaAlF:Eu 透明橡胶板 (TRUST),以及 EJ-270(含 6Li 的塑料)。最后,还讨论了与高计数率、低本底应用相关的闪烁体新发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Optical Materials: X
Optical Materials: X Engineering-Electrical and Electronic Engineering
CiteScore
3.30
自引率
0.00%
发文量
73
审稿时长
91 days
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