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Rectangular Nano-Wire Analysis at Terahertz and Optical Frequencies Using Interior-Exterior Method and Surface Impedance Model

机译:使用内部外部方法和表面阻抗模型在太赫兹和光学频率下矩形纳米线分析

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摘要

The field distribution inside metallic rectangular strip can be obtained using the interior-exterior method. The formulation for this method is exact for 2D cases; though, numerical implementation produces inaccuracies. In this paper, we compute the fields inside the rectangular metal strip at terahertz and optical frequencies and compare the field distribution with the bulk model. It is found that simple zeroth order surface impedance model can indeed be used instead of accurate but processor-exhausting techniques at terahertz frequencies. The zeroth order surface impedance model can also be used at optical frequencies, though with cautious. Moreover, a generalized definition of penetration depth is introduced to cover plasmonic propagation regime.
机译:可以使用内部外部方法获得金属矩形条内部的场分布。该方法的配方精确适用于2D情况;虽然,数值实现产生了不准确性。在本文中,我们在太赫兹和光学频率下计算矩形金属条内的磁场,并将现场分布与散装模型进行比较。结果发现,在太赫兹频率下,可以使用简单的Zeroth阶面表面阻抗模型代替精确但处理器 - 排气技术。 Zeroth阶面表面阻抗模型也可以在光学频率下使用,但谨慎。此外,引入了渗透深度的广义定义以覆盖等离子体传播状态。

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