纳米光子学
光电子学
光学
梁(结构)
物理
光束
共发射极
光束发散
激光器
拓扑(电路)
材料科学
激光束
激光束质量
数学
组合数学
作者
Ki Young Lee,Seungjin Yoon,Seok Ho Song,Jae Woong Yoon
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2022-12-09
卷期号:8 (49)
被引量:15
标识
DOI:10.1126/sciadv.add8349
摘要
Nanophotonic light emitters are key components in numerous application areas because of their compactness and versatility. Here, we propose a topological beam emitter structure that takes advantage of submicrometer footprint size, small divergence angle, high efficiency, and adaptable beam shaping capability. The proposed structure consists of a topological junction of two guided-mode resonance gratings inducing a leaky Jackiw-Rebbi state resonance. The leaky Jackiw-Rebbi state leads to in-plane optical confinement with funnel-like energy flow and enhanced emission probability, resulting in highly efficient optical beam emission. In addition, the structure allows adaptable beam shaping for any desired positive definite profiles by means of Dirac mass distribution control, which can be directly encoded in lattice geometry parameters. Therefore, the proposed approach provides highly desirable properties for efficient micro-light emitters and detectors in various applications including display, solid-state light detection and ranging, laser machining, label-free sensors, optical interconnects, and telecommunications.
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