Li Xiang-Jun, Cheng Gang, Yan De-Xian, Hou Xiao-Mei, Qiu Guo-Hua, Li Jiu-Sheng, Li Ji-Ning, Guo Shi-Hui, Zhou Wei-Dong
Opt Lett. 2021 Jan 15;46(2):290-293. doi: 10.1364/OL.412229.
At present, most of the gradient metasurfaces used to construct surface plasmon polaritons (SPPs)/spoof SPPs (SSPs) couplers are usually compact metal antennas working under reflection and transmission. In reflection mode, meta-couplers link propagating waves and surface waves (SWs), and SWs will undergo significant scattering before coupling to an Eigen SPP in the target system. In transmission mode, metal meta-couplers will encounter complex multilayer designing at the microwave/terahertz region and metal absorption loss at optical frequencies. In this Letter, to the best of our knowledge, a novel design using dielectric gradient metasurfaces instead of metal metasurface couplers is proposed to excite broadband SSPs on the metal groove array. We demonstrate that the well-designed phase dielectric gradient metasurface converts the normal incident terahertz wave to the predetermined angle in the dielectric substrate and then excites the broadband SSPs with the transmission coupling between the dielectric meta-coupler and SSPs surface. This research may open up new avenues in simple and broadband plane dielectric meta-couplers for SSPs in ultra-thin and compact functional devices for versatile applications.
目前,用于构建表面等离激元极化激元(SPPs)/类表面等离激元极化激元(SSPs)耦合器的大多数梯度超表面通常是在反射和透射模式下工作的紧凑型金属天线。在反射模式下,超表面耦合器连接传播波和表面波(SWs),并且表面波在耦合到目标系统中的本征表面等离激元之前会经历显著的散射。在透射模式下,金属超表面耦合器在微波/太赫兹区域会遇到复杂的多层设计,并且在光频率下会出现金属吸收损耗。在本信函中,据我们所知,提出了一种使用介质梯度超表面而非金属超表面耦合器的新颖设计,以在金属凹槽阵列上激发宽带类表面等离激元极化激元。我们证明,精心设计的相位介质梯度超表面将垂直入射的太赫兹波在介质基板中转换为预定角度,然后通过介质超表面耦合器与类表面等离激元极化激元表面之间的透射耦合激发宽带类表面等离激元极化激元。这项研究可能会为用于超薄紧凑型多功能器件中类表面等离激元极化激元的简单宽带平面介质超表面耦合器开辟新途径。