Wang Ying-Hua, Kim Inki, Jin Ren-Chao, Jeong Heonyeong, Li Jia-Qi, Dong Zheng-Gao, Rho Junsuk
Shandong Provincial Key Laboratory of Laser Polarization and Information Technology, Laser Institute, Qufu Normal University Qufu 273165 China
School of Physics, Southeast University Nanjing 211189 China
RSC Adv. 2018 Nov 15;8(67):38556-38561. doi: 10.1039/c8ra08073a. eCollection 2018 Nov 14.
A bi-layer continuous omega-shaped metamaterial was proposed and fabricated to measure the asymmetric transmission (AT) effect of a linearly polarized light at near-infrared region. The metamaterial was fabricated by the electron-beam lithography method, and the AT effect was demonstrated by the difference between total transmittances in the two opposite propagation directions for -/-polarized incident light. The experimental results were confirmed by the full-wave simulated results. Importantly, we also experimentally demonstrated that the AT effect is robust against the misalignments between the first and the second omega-shaped layers. Accordingly, the successfully prepared sample and its characterization provide a bright future for applications in light-controlled switchers and optical diodes in on-chip optical systems and information communication systems.
提出并制作了一种双层连续ω形超材料,用于测量近红外区域线偏振光的非对称传输(AT)效应。该超材料采用电子束光刻法制作,通过测量-/-偏振入射光在两个相反传播方向上的总透射率之差来证明AT效应。实验结果得到了全波模拟结果的证实。重要的是,我们还通过实验证明,AT效应对于第一和第二ω形层之间的不对准具有鲁棒性。因此,成功制备的样品及其表征为片上光学系统和信息通信系统中的光控开关和光学二极管应用提供了光明的前景。