闪烁体
电子
光学
探测器
光发射
闪烁
纳米光子学
物理
光电子学
核物理学
作者
Charles Roques‐Carmes,Nicholas Rivera,Ali Ghorashi,Steven E. Kooi,Yi Yang,Zin Lin,Justin Beroz,Aviram Massuda,Jamison Sloan,Nicolas Romeo,Yang Yu,John D. Joannopoulos,Ido Kaminer,Steven G. Johnson,Marin Soljačić
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2022-02-24
卷期号:375 (6583): eabm9293-eabm9293
被引量:202
标识
DOI:10.1126/science.abm9293
摘要
Bombardment of materials by high-energy particles often leads to light emission in a process known as scintillation. Scintillation has widespread applications in medical imaging, x-ray nondestructive inspection, electron microscopy, and high-energy particle detectors. Most research focuses on finding materials with brighter, faster, and more controlled scintillation. We developed a unified theory of nanophotonic scintillators that accounts for the key aspects of scintillation: energy loss by high-energy particles, and light emission by non-equilibrium electrons in nanostructured optical systems. We then devised an approach based on integrating nanophotonic structures into scintillators to enhance their emission, obtaining nearly an order-of-magnitude enhancement in both electron-induced and x-ray-induced scintillation. Our framework should enable the development of a new class of brighter, faster, and higher-resolution scintillators with tailored and optimized performance.
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