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用于全息投影的非对称惠更斯介电超表面实现近乎完美的透射和全相位控制。

Near unity transmission and full phase control with asymmetric Huygens' dielectric metasurfaces for holographic projections.

作者信息

Liang Xinan, Yu Yefeng, Xu Xuewu, Fu Yuan Hsing, Valuckas Vytautas, Paniagua-Dominguez Ramon, Kuznetsov Arseniy I

出版信息

Appl Opt. 2022 Feb 10;61(5):B164-B170. doi: 10.1364/AO.444728.

Abstract

Huygens' metasurfaces are transparent arrays of nanostructures that enable phase-front manipulation. This is achieved by simultaneous excitation of electric dipole (ED) and magnetic dipole (MD) resonances with equal amplitudes and phases in the constituent meta-atoms. In usual designs, the size changes of the meta-atoms, necessary to map the phase front, can detune the overlapping of ED and MD resonances, decreasing the transmission and limiting the operating bandwidth. In this report, we demonstrate that ED and MD resonances can be almost perfectly tuned together over a large wavelength range, keeping their spectral overlap, in a silicon metasurface by using anisotropic meta-atoms. In particular, we show near-unity transmission (>95 in simulations) and 2 phase control in a wavelength range from 760 to 815 nm using cuboidal nanoantennas. Using this concept, we also experimentally demonstrate clear reconstruction from holograms of a single metasurface spanning the near infrared and the whole visible spectral range.

摘要

惠更斯超表面是能够实现波前操控的纳米结构透明阵列。这是通过在组成超原子中以相等的幅度和相位同时激发电偶极子(ED)和磁偶极子(MD)共振来实现的。在常规设计中,为映射波前而对超原子尺寸进行的改变会使ED和MD共振的重叠失调,从而降低透射率并限制工作带宽。在本报告中,我们证明,通过使用各向异性超原子,在硅超表面中,ED和MD共振能够在很大的波长范围内几乎完美地一起调谐,保持它们的光谱重叠。特别是,我们展示了使用长方体纳米天线在760至815纳米波长范围内接近单位透射率(模拟中>95%)和2π相位控制。利用这一概念,我们还通过实验证明了从跨越近红外和整个可见光谱范围的单个超表面全息图进行清晰重建。

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