Liu Tonghao, Meng Yueyu, Ma Hua, Wang Jiafu, Wang Xiaofeng, Zhu Ruichao, Wang He, Yang Jiaheng, Li Yongfeng, Qu Shaobo
Opt Express. 2022 Feb 28;30(5):7124-7136. doi: 10.1364/OE.452395.
A multifunctional metasurface is capable of manipulating electromagnetic waves and achieving kaleidoscopic functions flexibly, which significantly improves the integration and utilization of a single metasurface and has become one of the hotspots in electromagnetics. However, the majority of designs to date can only operate for limited polarization states in half-space and are difficult to show diverse functions at the same time, which restrict the widespread applications of multifunctional metadevices. Herein, an inspiring strategy of a chiral transmission-reflection-selective bifunctional metasurface is proposed to generate two independent functions in co-polarized reflection channel for left-handed circular polarized (LCP) incidence utilizing rotation-induced geometric phase modulation and in co-polarized transmission channel for right-handed circular polarized (RCP) incidence utilizing scaling-induced propagation phase modulation, and both functions appear concurrently under arbitrary linear polarized (LP) incident waves. To verify the feasibility of this methodology, three proof-of-concept metadevices composed of a dual-mode orbital angular momentum (OAM) generator, a bifocal metalens and an integrated metadevice of OAM generator and metalens are constructed and their performances in simulations and experiments are in good accordance with the theoretical ones. This exotic design of bifunctional metasurface will open up a promising way for multifunctional metadevices in engineering applications.
多功能超表面能够灵活地操纵电磁波并实现万花筒般的功能,这显著提高了单个超表面的集成度和利用率,已成为电磁学领域的热点之一。然而,迄今为止,大多数设计仅能在半空间中针对有限的偏振态运行,并且难以同时展现多种功能,这限制了多功能超表面器件的广泛应用。在此,提出了一种具有启发性的策略,即手性传输 - 反射选择性双功能超表面,利用旋转诱导的几何相位调制在左旋圆极化(LCP)入射的共极化反射通道中产生两个独立功能,利用缩放诱导的传播相位调制在右旋圆极化(RCP)入射的共极化传输通道中产生两个独立功能,并且在任意线性极化(LP)入射波下这两种功能同时出现。为了验证该方法的可行性,构建了由双模轨道角动量(OAM)发生器、双焦超透镜以及OAM发生器与超透镜的集成器件组成的三个概念验证超表面器件,其在模拟和实验中的性能与理论结果高度吻合。这种双功能超表面的独特设计将为多功能超表面器件在工程应用中开辟一条充满希望的道路。