光束转向
光学
梁(结构)
皮秒
波长
物理
航程(航空)
光电子学
材料科学
激光器
复合材料
作者
Amr M. Shaltout,Konstantinos G. Lagoudakis,Jorik van de Groep,Soo Jin Kim,Jelena Vučković,Vladimir M. Shalaev,Mark L. Brongersma
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2019-07-25
卷期号:365 (6451): 374-377
被引量:175
标识
DOI:10.1126/science.aax2357
摘要
The capability of on-chip wavefront modulation has the potential to revolutionize many optical device technologies. However, the realization of power-efficient phase-gradient metasurfaces that offer full-phase modulation (0 to 2π) and high operation speeds remains elusive. We present an approach to continuously steer light that is based on creating a virtual frequency-gradient metasurface by combining a passive metasurface with an advanced frequency-comb source. Spatiotemporal redirection of light naturally occurs as optical phase-fronts reorient at a speed controlled by the frequency gradient across the virtual metasurface. An experimental realization of laser beam steering with a continuously changing steering angle is demonstrated with a single metasurface over an angle of 25° in just 8 picoseconds. This work can support integrated-on-chip solutions for spatiotemporal optical control, directly affecting emerging applications such as solid-state light detection and ranging (LIDAR), three-dimensional imaging, and augmented or virtual systems.
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