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Dispersive Contour-Path FDTD Algorithm for the Drude–Lorentz Model

机译:Drude-Lorentz模型的分散轮廓路径FDTD算法

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摘要

A dispersive contour-path algorithm is newly introduced into the finite-difference time-domain method for the analysis of arbitrarily shaped dispersive media expressed by the Drude-Lorentz (DL) model. The frequency-dependent formulation is performed using the simple trapezoidal recursive convolution technique. A faster convergence of the numerical results for an Au cylinder is found to be achieved over a wide wavelength range. In addition, the present method can suppress the spurious localization of surface plasmons caused by the conventional staircase approximation. The transmission characteristics of a grating consisting of a metal cylinder array are also revealed and discussed.
机译:新引入了分散轮廓路径算法,用于分析Drude-Lorentz(DL)模型表达的任意形状的分散介质的有限差分时间域方法。使用简单的梯形递归卷积技术进行频率依赖性配方。发现Au圆柱体的数值结果的更快收敛在宽波长范围内实现。此外,本方法可以抑制由传统楼梯近似引起的表面等离子体的杂散定位。还揭示和讨论了由金属缸阵列组成的光栅的传输特性。

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