光学
物理
纳米光子学
空气束
光子学
梁(结构)
光子晶体
光束
多路复用
宽带
光电子学
计算机科学
电信
作者
Qingbin Fan,Wenqi Zhu,Yuzhang Liang,Pengcheng Huo,Cheng Zhang,Amit Agrawal,Kun Huang,Xiangang Luo,Yanqing Lu,Cheng‐Wei Qiu,Henri J. Lezec,Ting Xu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2018-12-31
卷期号:19 (2): 1158-1165
被引量:103
标识
DOI:10.1021/acs.nanolett.8b04571
摘要
Bending light along arbitrary curvatures is a captivating and popular notion, triggering unprecedented endeavors in achieving diffraction-free propagation along a curved path in free-space. Much effort has been devoted to achieving this goal in homogeneous space, which solely relies on the transverse acceleration of beam centroid exerted by a beam generator. Here, based on an all-dielectric metasurface, we experimentally report a synthetic strategy of encoding and multiplexing acceleration features on a freely propagating light beam, synergized with photonic spin states of light. Independent switching between two arbitrary visible accelerating light beams with distinct acceleration directions and caustic trajectories is achieved. This proof-of-concept recipe demonstrates the strength of the designed metasurface chip: subwavelength pixel size, independent control over light beam curvature, broadband operation in the visible, and ultrathin scalable planar architecture. Our results open up the possibility of creating ultracompact, high-pixel density, and flat-profile nanophotonic platforms for efficient generation and dynamical control of structured light beams.
科研通智能强力驱动
Strongly Powered by AbleSci AI