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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Numerical analysis of near-infrared wave propagation characteristics in dielectric-coated parallel planar microstructural waveguides
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Numerical analysis of near-infrared wave propagation characteristics in dielectric-coated parallel planar microstructural waveguides

机译:介质包覆平行平面微结构波导中近红外波传播特性的数值分析

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摘要

In this paper, the properties of electromagnetic (EM) wave propagation in layered planar microstructural waveguides are investigated. Analytical and numerical results are presented on the propagation of a 1-/spl mu/m EM wave in a parallel planar waveguide. Its walls are made of Au or Si, coated with a thin layer of SiO/sub 2/ and separated by a fluid. The propagation characteristics of even and odd TE and TM modes are described as a function of the coating thickness. It is shown that the propagation of TE modes exhibits a sudden shift in power flow distribution from the fluid to the coating when the coating thickness exceeds a critical value. This property may be exploited for micromachined sensor applications. TM modes do not exhibit this behaviour.
机译:本文研究了层状平面微结构波导中电磁波的传播特性。分析和数值结果显示了1- / spl mu / m EM波在平行平面波导中的传播。它的壁是用金或硅制成的,涂有SiO / sub 2 /薄层并被流体隔开。描述了TE和TM模式的偶数和偶数传播特性与涂层厚度的关系。结果表明,当涂层厚度超过临界值时,TE模式的传播表现出从流体到涂层的功率流分布突然变化。此属性可用于微机械传感器应用。 TM模式不表现出这种行为。

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