Ling Yonghong, Huang Lirong, Hong Wei, Liu Tongjun, Sun Yali, Luan Jing, Yuan Gang
Opt Express. 2017 Jun 12;25(12):13648-13658. doi: 10.1364/OE.25.013648.
Asymmetric optical transmission is fundamental and highly desirable in information processing and full manipulation of lightwave. We here propose an asymmetric optical transmission device consisting of a gradient metasurface and a one-dimensional subwavelength grating. Owing to the unidirectional excitation of surface plasmon polaritons (SPPs) by the gradient metasurface, and SPP-assisted extraordinary optical transmission, forward incident light has much higher transmission than the backward one. We combine temporal coupled mode theory and finite-difference time-domain simulations to verify its operation principle and study the performance. The results indicate that asymmetric transmission with high-contrast and large forward transmittance can be obtained around the 1.3 µm optical communication band.
非对称光传输在光波的信息处理和完全操控中是基本且非常理想的。我们在此提出一种由梯度超表面和一维亚波长光栅组成的非对称光传输器件。由于梯度超表面对表面等离激元极化激元(SPP)的单向激发以及SPP辅助的超常光传输,正向入射光的传输比反向入射光高得多。我们结合时间耦合模理论和时域有限差分模拟来验证其工作原理并研究性能。结果表明,在1.3 µm光通信波段附近可实现具有高对比度和大正向透过率的非对称传输。