Yang Rui, Xie Yongjun, Yang Xiaodong, Wang Rui, Chen Botao
National Laboratory of Antennas and Microwave Technology, Xidian University, Xi'an 710071,
Opt Express. 2009 Apr 13;17(8):6101-17. doi: 10.1364/oe.17.006101.
A rigorous full wave analysis of bianisotropic split ring resonator (SRR) metamaterials is presented for different electromagnetic field polarization and propagation directions. An alternative physical explanation is gained by revealing the fact that imaginary wave number leads to the SRR resonance. Metamaterial based parallel plate waveguide and rectangular waveguide are then examined to explore the resonance response to transverse magnetic and transverse electric waves. It is shown that different dispersion properties, such as non-cutoff frequency mode propagation and enhanced bandwidth of single mode operation, become into existence under certain circumstances. In addition, salient dispersion properties are imparted to non-radiative dielectric waveguides and H waveguides by uniaxial bianisotropic SRR metamaterials. Both longitudinal-section magnetic and longitudinal-section electric modes are capable of propagating very slowly due to metamaterial bianisotropic effects. Particularly, the abnormal falling behavior of some higher-order modes, eventually leading to the leakage, may appear when metamaterials are double negative. Fortunately, for other modes, leakage can be reduced due to the magnetoelectric coupling. When the metamaterials are of single negative parameters, leakage elimination can be achieved.
针对不同的电磁场极化和传播方向,对双各向异性分裂环谐振器(SRR)超材料进行了严格的全波分析。通过揭示虚波数导致SRR谐振这一事实,获得了另一种物理解释。随后研究了基于超材料的平行板波导和矩形波导,以探讨对横向磁波和横向电波的谐振响应。结果表明,在某些情况下会出现不同的色散特性,如非截止频率模式传播和单模工作带宽的增加。此外,单轴双各向异性SRR超材料赋予非辐射介质波导和H波导显著的色散特性。由于超材料双各向异性效应,纵向截面磁模和纵向截面电模都能够非常缓慢地传播。特别地,当超材料为双负时,一些高阶模可能会出现异常下降行为,最终导致泄漏。幸运的是,对于其他模式,由于磁电耦合可以减少泄漏。当超材料具有单负参数时,可以实现泄漏消除。