Liu Shuo, Ma Shaojie, Shao Ruiwen, Zhang Lei, Yan Tao, Ma Qian, Zhang Shuang, Cui Tie Jun
State Key Laboratory of Millimeter Waves, Southeast University, Nanjing 210096, China.
Department of Physics, The University of Hong Kong, Hong Kong, China.
Sci Adv. 2022 Aug 19;8(33):eabo1511. doi: 10.1126/sciadv.abo1511. Epub 2022 Aug 17.
Recent advances in digitally programmable metamaterials have accelerated the development of reconfigurable intelligent surfaces (RIS). However, the excessive use of active components (e.g., pin diodes and varactor diodes) leads to high costs, especially for those operating at millimeter-wave frequencies, impeding their large-scale deployments in RIS. Here, we introduce an entirely different approach-moiré metasurfaces-to implement dynamic beamforming through mutual twists of two closely stacked metasurfaces. The superposition of two high-spatial-frequency patterns produces a low-spatial-frequency moiré pattern through the moiré effect, which provides the surface impedance profiles to generate desired radiation patterns. We demonstrate experimentally that the direction of the radiated beams can continuously sweep over the entire reflection space along predesigned trajectories by simply adjusting the twist angle and the overall orientation. Our work opens previously unexplored directions for synthesizing far-field scattering through the direct contact of mutually twisted metallic patterns with different plane symmetry groups.
数字可编程超材料的最新进展加速了可重构智能表面(RIS)的发展。然而,有源组件(如 PIN 二极管和变容二极管)的过度使用导致成本高昂,特别是对于那些在毫米波频率下工作的组件,这阻碍了它们在 RIS 中的大规模部署。在此,我们引入一种完全不同的方法——莫尔超表面——通过两个紧密堆叠的超表面的相互扭转来实现动态波束形成。两个高空间频率图案的叠加通过莫尔效应产生一个低空间频率的莫尔图案,该图案提供表面阻抗分布以生成所需的辐射方向图。我们通过实验证明,通过简单地调整扭转角度和整体方向,辐射波束的方向可以沿着预先设计的轨迹在整个反射空间中连续扫描。我们的工作为通过具有不同平面对称群的相互扭转的金属图案的直接接触来合成远场散射开辟了以前未探索的方向。