结构化环境下的自由电子辐射工程

Hao Hu, Xiao Lin, Yu Luo
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引用次数: 15

摘要

自由电子辐射是快速电子与局部电磁环境相互作用的结果。材料技术的最新进展为控制自由电子的光发射提供了强有力的工具,并可能促进自由电子辐射在粒子探测、激光、量子信息处理等方面的许多有趣应用。本文简要介绍了近年来在二维材料、超表面、超材料和光子晶体等不同结构环境中自发自由电子辐射的理论发展和实验观察。本文还报道了由外场(cid:12)诱导的自由电子与光子准粒子相互作用产生的受激自由电子辐射的研究进展。此外,我们还展望了自由电子辐射这一蓬勃发展的领域的潜在研究方向。可定制的发射特性,使自由电子辐射在粒子中有广泛的应用
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FREE-ELECTRON RADIATION ENGINEERING VIA STRUCTURED ENVIRONMENTS
|Free-electron radiation results from the interaction between swift electrons and the local electromagnetic environment. Recent advances in material technologies provide powerful tools to control light emission from free electrons and may facilitate many intriguing applications of free-electron radiation in particle detections, lasers, quantum information processing, etc. Here, we provide a brief overview on the recent theoretical developments and experimental observations of spontaneous free-electron radiation in various structured environments, including two-dimensional materials, metasurfaces, metamaterials, and photonic crystals. We also report the research progresses on the stimulated free-electron radiation that results from the interaction between free electrons and photonic quasi-particles induced by the external (cid:12)eld. Moreover, we provide an outlook of potential research directions for this vigorous realm of free-electron radiation. tailorable emission properties, free-electron radiations broad applications in the of particle
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