Xiao Zhong-yin, Liu De-jun, Ma Xiao-long, Wang Zi-hua
Opt Express. 2015 Mar 23;23(6):7053-61. doi: 10.1364/OE.23.007053.
In this paper, a multi-layered metallic structure is proposed, which consists of split-ring resonators on both sides of two dielectric substrates. Numerical results reveal that the structure realizes a high magnitude of 0.94, three bands and broadband (more than 8 GHz) asymmetric transmission for linearly polarized wave. These properties are not observed in previous works. In order to better know these transmission properties, the Fabry-Perot like resonance model has been introduced to analyze the enhancement mechanism of asymmetric transmission in the multi-layered structure. The physical mechanism of linearly polarized wave conversion and asymmetric transmission based on electric fields and currents distribution is also analyzed in detail, respectively.
本文提出了一种多层金属结构,它由两个介电基片两侧的裂环谐振器组成。数值结果表明,该结构实现了幅度高达0.94、三个频段以及宽带(超过8GHz)的线偏振波非对称传输。这些特性在以往的工作中并未观察到。为了更好地了解这些传输特性,引入了类法布里-珀罗共振模型来分析多层结构中非对称传输的增强机制。还分别详细分析了基于电场和电流分布的线偏振波转换和非对称传输的物理机制。