Xie Yunya, Liu Haitao, Jia Hongwei, Zhong Ying
Opt Express. 2015 Mar 9;23(5):5749-62. doi: 10.1364/OE.23.005749.
We propose a microscopic surface-mode model for the extraordinary optical transmission (EOT) through subwavelength metallic slit array covered with a thin dielectric layer under illumination of transverse-electric (TE) polarization. Remarkably, surface plasmon polarizations (SPPs) do not exist for this polarization. It is commonly believed that the waveguide mode in the dielectric layer plays a role similar to that of the SPP in classical EOT. To check the intuitive belief, we derive a surface-mode model by considering the multiple scattering process of the fundamental waveguide mode and neglecting all other residual field in the thin dielectric layer. The model captures the main feature of EOT and provides a phase-matching condition to predict the transmission resonance. Quantitative comparison between fully-vectorial calculations and model predictions shows that besides the fundamental waveguide mode, other residual field in the thin dielectric layer also contributes to the EOT without SPP.
我们提出了一种微观表面模式模型,用于研究在横向电(TE)偏振光照射下,通过覆盖有薄介电层的亚波长金属狭缝阵列的超常光学传输(EOT)。值得注意的是,这种偏振不存在表面等离激元极化(SPP)。人们普遍认为,介电层中的波导模式在经典EOT中起着与SPP类似的作用。为了验证这一直观的观点,我们通过考虑基本波导模式的多重散射过程并忽略薄介电层中的所有其他残余场,推导出了一个表面模式模型。该模型捕捉到了EOT的主要特征,并提供了一个相位匹配条件来预测传输共振。全矢量计算与模型预测之间的定量比较表明,除了基本波导模式外,薄介电层中的其他残余场也对没有SPP的EOT有贡献。