School of Electronic Science and Engineering, Nanjing University, Nanjing, 210093, China.
Department of Electrical and Computer Engineering, National University of Singapore, Singapore, 117583, Singapore.
Adv Mater. 2020 Jan;32(2):e1906352. doi: 10.1002/adma.201906352. Epub 2019 Nov 20.
Janus monolayers, a class of two-faced 2D materials, have received significant attention in electronics, due to their unusual conduction properties stemming from their inherent out-of-plane asymmetry. Their photonic counterparts recently allowed for the control of hydrogenation/dehydrogenation processes, yielding drastically different responses for opposite light excitation spins. A passive Janus metasurface composed of cascaded subwavelength anisotropic impedance sheets is demonstrated. By introducing a rotational twist in their geometry, asymmetric transmission with the desired phase function is realized. Their broken out-of-plane symmetry realizes different functions for opposite propagation directions, enabling direction-dependent versatile functionalities. A series of passive Janus metasurfaces that enable functionalities including one-way anomalous refraction, one-way focusing, asymmetric focusing, and direction-controlled holograms are experimentally demonstrated.
Janus 单层,一类两面的二维材料,由于其固有面外不对称性导致的异常传导特性,在电子学领域引起了极大的关注。它们的光子对应物最近允许控制氢化/脱氢过程,从而产生相反光激发旋转的截然不同的响应。本文演示了由级联亚波长各向异性阻抗片组成的无源 Janus 超表面。通过在其几何形状中引入旋转扭曲,实现了具有所需相位函数的不对称传输。它们打破了面外的对称性,为相反的传播方向实现了不同的功能,从而实现了方向相关的多功能性。实验证明了一系列无源 Janus 超表面,这些超表面具有单向异常折射、单向聚焦、不对称聚焦和方向控制全息图等功能。