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首页> 外文期刊>Optics Letters >Reconfigurable multifrequency and wide-angle directional beaming of light from a subwavelength metal slit with graphene metasurfaces
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Reconfigurable multifrequency and wide-angle directional beaming of light from a subwavelength metal slit with graphene metasurfaces

机译:来自带石墨烯元卷积的亚波长金属狭缝的重新配置的多频和广角方向横梁

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摘要

Directional beaming of light from a subwavelength slit surrounded with phase-gradient metasurfaces can be realized with very high efficiencies, but the available optical proposals suffer from narrow bandwidth after the fabrication process and cannot be reconfigured dynamically with switchable frequencies. Here we demonstrate reconfigurable multifrequency directional beaming by placing a graphene ribbon array at two sides of a subwavelength metallic slit. Each graphene ribbon works with the metallic film to fulfill the magnetic response, and the resultant reflection phase can cover full 0-2 pi range by changing the chemical potential of graphene. The on-axis and off-axis directional beams can be formed by properly arranging the chemical potentials of graphene ribbons to serve as meta-couplers between surface waves and propagating waves. Thanks to the negligible interaction between vertically stacked graphene sheets, the beaming frequencies and angles can be broadened by use of double layers of the graphene ribbon array. (C) 2020 Optical Society of America
机译:通过非常高的效率实现来自围绕相位梯度元件的亚波长狭缝的光光,但是在制造过程之后,可用的光学提案遭受窄带宽,并且不能与可切换频率动态重新配置。在这里,我们通过将石墨烯带阵列放置在亚壳长度金属狭缝的两侧来证明可重构的多频性方向梁。每个石墨烯带配合金属膜以满足磁响应,并且通过改变石墨烯的化学电位,所得到的反射相可以覆盖完整的0-2 pi范围。可以通过适当地布置石墨烯带的化学电位作为表面波和传播波之间的元耦合器来形成轴和轴向轴方向梁。由于垂直堆叠的石墨烯片之间的可忽略不计的相互作用,通过使用石墨烯带阵列的双层可以扩大光束频率和角度。 (c)2020美国光学学会

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