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首页> 外文期刊>Photonics Journal, IEEE >Analysis of Extraordinary Optical Transmission With Periodic Metallic Gratings Using ADE-LOD-FDTD Method
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Analysis of Extraordinary Optical Transmission With Periodic Metallic Gratings Using ADE-LOD-FDTD Method

机译:使用ADE-LOD-FDTD方法分析具有周期性金属光栅的非凡光传输

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摘要

In this paper, a frequency-dependent locally one-dimensional finite-difference time-domain (LOD-FDTD) method is developed for the extraordinary optical transmission (EOT) analysis of periodic metallic gratings. The dispersion of the metal, caused by the evanescent waves propagating along the interface between the metal and the dielectric materials in the visible and near infrared regions, is expressed by the Drude model and solved with a generalized auxiliary differential equation (ADE) technique. With efficient preprocessing for the lower–upper (LU) decomposition in ADE-LOD-FDTD, the periodic boundary condition (PBC) is applied to the 2-D metallic grating structure. Two numerical examples with different subwavelength slits are calculated, and the mechanism of the EOT phenomenon is investigated. Compared with the standard ADE-FDTD method, the results from the proposed method show its good efficiency for the nanostructures.
机译:本文提出了一种基于频率的局部一维时域有限差分法(LOD-FDTD),用于周期性金属光栅的非常规光传输(EOT)分析。金属的弥散是由Drude模型表示的,它是由沿可见光和近红外区域中的金属和介电材料之间的界面传播的waves逝波引起的,并由广义辅助微分方程(ADE)技术求解。通过对ADE-LOD-FDTD中的上下分解(LU)进行有效的预处理,将周期性边界条件(PBC)应用于二维金属光栅结构。计算了两个具有不同亚波长缝隙的数值例子,并研究了EOT现象的机理。与标准ADE-FDTD方法相比,该方法的结果表明了其对纳米结构的良好效率。

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