闪烁体
材料科学
探测器
中子
光学
工程物理
中子探测
光电子学
测距
文艺复兴
光子学
纳米技术
闪烁
光纤
粒子探测器
可扩展性
工艺工程
核工程
玻璃纤维
中子源
中子成像
计算机科学
光学玻璃
纤维
作者
Qiwen Pan,Yiyi Chen,Jiaxin Yang,Yuanfeng Luo,wei lv,Jinghua Sun,Xiaoyong Chen,Xiongjian Huang,Hongcheng Wang,Hongyang Zhao,Guoping Dong
摘要
Modern advances in high-energy physics have established neutrons as essential probes in scientific research, enabling breakthroughs ranging from high-energy physics, industrial manufacturing, and materials innovation to heritage conservation, medical diagnostics, and geological prospecting. The diminishing supply of 3He gas detectors has increased the demand for cost-efficient alternative neutron-detecting materials. Solid-state glass scintillators demonstrate particular promise due to their low cost, scalable production, and shape adaptability. However, improving their detection efficiency remains challenging due to the structural complexity of glass systems. This review outlines the neutron detection mechanisms and critical performance benchmarks and evaluates recent advances in the development of glass scintillators. Focusing on activator engineering and matrix optimization, we assess the current progress and existing challenges in scintillator performances. We further discuss the innovations in glass fiber device architectures and their emerging applications in neutron imaging. This article concludes with prospects for future research, emphasizing mechanisms, materials engineering, efficiency optimization, and advanced fiber-based detector systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI