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首页> 外文期刊>Applied optics >Mode propagation in optical nanowaveguides with dielectric cores and surrounding metal layers
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Mode propagation in optical nanowaveguides with dielectric cores and surrounding metal layers

机译:具有介电芯和周围金属层的光学纳米波导中的模式传播

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摘要

The mode spectrum in an optical nanowaveguide consisting of a dielectric-core layer surrounded by two identical metal layers is investigated. A simple model based on mode matching to predict the properties of mode propagation in such optical nanowaveguides is proposed. It is shown that quasi-TM_(00) and quasi-TM_(10) modes supported by an optical microstrip line do not have a cutoff frequency, regardless of the size of the metal strips, the thickness of the dielectric slab, and the cross-sectional shape. The transverse size of the TM_(00) mode supported by a nanosized microstrip line was found to be approximately equal to the transverse dimension of the microstrip line. In closed rectangular and elliptical nanowaveguides, i.e., in which all dielectric surfaces are covered with metal films, the cross-sectional shape of the waveguide should be stretched along one side to produce propagation conditions for the fundamental mode.
机译:研究了由被两个相同的金属层包围的介电芯层组成的光纳米波导中的模谱。提出了一种基于模式匹配的简单模型,以预测此类光学纳米波导中模式传播的特性。结果表明,光学微带线支持的准-TM_(00)和准-TM_(10)模式不具有截止频率,而不管金属带的尺寸,介电平板的厚度和十字形如何。截面形状。发现由纳米级微带线支撑的TM_(00)模式的横向尺寸大约等于微带线的横向尺寸。在闭合的矩形和椭圆形纳米波导中,即所有介电表面都覆盖有金属膜的情况下,波导的横截面形状应沿一侧拉伸以产生基本模式的传播条件。

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