Wang Ying-Hua, Jin Ren-Chao, Li Jie, Li Jia-Qi, Dong Zheng-Gao
Opt Express. 2018 Feb 5;26(3):3508-3517. doi: 10.1364/OE.26.003508.
In this paper, the infinite-length metallic bar is folded to a continuous omega-shaped resonator and then arranged as a bi-layer metamaterial, which presents a hybrid resonance and a Fabry-Perot-like cavity mode. The asymmetric transmission (AT) for linearly polarized light is powerfully enhanced at a near-infrared regime by strongly coupling the hybrid resonance to the cavity, with the maximum value of the high-efficiency AT effect reaching 0.8 at around 1364 nm. At this near-infrared band, such a high-efficiency AT effect has never been realized previously by a bi-layer metamaterial. More importantly, we demonstrate that our design is robust to the misalignments, which greatly decreases the difficulties in sample fabrications. Accordingly, the proposed omega-shaped metamaterial provides potential applications in designing polarization filters, polarization switches, and other nano-devices.
在本文中,将无限长金属棒折叠成连续的ω形谐振器,然后将其排列成双层超材料,该双层超材料呈现出混合共振和类似法布里 - 珀罗的腔模。通过将混合共振与腔强烈耦合,在近红外波段显著增强了线偏振光的非对称传输(AT),在1364 nm左右高效AT效应的最大值达到0.8。在这个近红外波段,双层超材料此前从未实现过如此高效的AT效应。更重要的是,我们证明了我们的设计对不对准具有鲁棒性,这大大降低了样品制备的难度。因此,所提出的ω形超材料在设计偏振滤波器、偏振开关和其他纳米器件方面具有潜在应用。