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采用确定性方法设计效率近100%的无源异常衍射超表面。

Deterministic approach to design passive anomalous-diffraction metasurfaces with nearly 100% efficiency.

作者信息

Fang Zhening, Li Haipeng, Chen Yan, Sun Shulin, Xiao Shiyi, He Qiong, Zhou Lei

机构信息

State Key Laboratory of Surface Physics, Key Laboratory of Micro and Nano Photonic Structures (Ministry of Education) and Physics Department, Fudan University, Shanghai, 200433, China.

College of Information and Communication, National University of Defense Technology, Wu Han, 430000, China.

出版信息

Nanophotonics. 2023 Mar 1;12(13):2383-2396. doi: 10.1515/nanoph-2022-0755. eCollection 2023 Jun.

Abstract

Designing perfect anomalous reflectors is crucial for achieving many metasurface-based applications, but available design approaches for the cases of extremely large bending angles either require unrealistic gain-loss materials or rely on brute-force optimizations lacking physical guidance. Here, we propose a deterministic approach to design metasurfaces that can reflect impinging light to nonspecular directions with almost 100% efficiencies. With both incident and out-going far-field waves given, we can retrieve the surface-impedance profile of the target metadevice by matching boundary conditions with allowed near-field modes added self-consistently and then construct the metadevices deterministically based on passive meta-atoms exhibiting local responses. We design/fabricate two proof-of-concept microwave metadevices and experimentally demonstrate that the first one achieves anomalous reflection to a 70° angle with efficiency ∼98%, and the second one can generate multiple reflected beams with desired bending angles and power allocations. Our findings pave the way for realizing high-efficiency wave-control metadevices with desired functionalities.

摘要

设计完美的异常反射器对于实现许多基于超表面的应用至关重要,但对于极大弯曲角度的情况,现有的设计方法要么需要不切实际的增益损耗材料,要么依赖缺乏物理指导的蛮力优化。在此,我们提出一种确定性方法来设计超表面,该超表面能够以近100%的效率将入射光反射到非镜面方向。在给定入射和出射远场波的情况下,我们可以通过将边界条件与自洽添加的允许近场模式相匹配来检索目标超器件的表面阻抗分布,然后基于表现出局部响应的无源超原子确定性地构建超器件。我们设计并制造了两个概念验证微波超器件,并通过实验证明,第一个超器件实现了向70°角的异常反射,效率约为98%,第二个超器件可以产生具有所需弯曲角度和功率分配的多个反射光束。我们的研究结果为实现具有所需功能的高效波控超器件铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1bf/11501116/580037247e0e/j_nanoph-2022-0755_fig_001.jpg

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