闪烁体
材料科学
中子探测
中子
探测器
铸造
中子成像
光学
光电子学
灵活性(工程)
辐射
辐射硬化
粒子探测器
中子温度
光子学
脉搏(音乐)
纳米技术
核工程
作者
S.A. Pozzi,E. Schneider,E. Neely,R. Lopez,P. Feng,S.D. Clarke
标识
DOI:10.1016/j.radmeas.2026.107627
摘要
Organic Glass Scintillators (OGSs) are an emerging class of scintillator materials for advanced radiation detection applications requiring high light output and efficiency, compactness, scalability, and dual-particle detection. This paper reviews recent literature on OGSs, focusing on their properties and applications. We highlight the promising characteristics of OGS, including excellent time resolution, high light output, pulse shape discrimination (PSD) and ease of manufacturing via casting procedures, as well as their flexibility in forming pixelated arrays. Challenges include optimizing PSD at low energies and enhancing long-term stability (recrystallization). The use of OGSs in prototype detectors is being explored for fast neutron detection, compact imaging systems, and neutron spectrometry. This evaluation includes laboratory tests and preliminary applications in the field. • Organic Glass Scintillators (OGSs) are an emerging class of scintillator materials for advanced radiation detection applications. • OGS demonstrates excellent time resolution, high light output, pulse shape discrimination (PSD) and ease of manufacturing via casting procedures • Challenges of OGS include optimizing PSD at low energies and enhancing long-term stability (recrystallization). • The use of OGSs in prototype detectors is being explored for fast neutron detection, compact imaging systems, and neutron spectrometry.
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