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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Transmission Line and Equivalent Circuit Models for Plasmonic Waveguide Components
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Transmission Line and Equivalent Circuit Models for Plasmonic Waveguide Components

机译:等离子体波导组件的传输线和等效电路模型

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Modeling of waveguide junctions using transmission lines and lumped circuit elements is common practice in microwave networks. By the help of the scattering matrix formalism, it is possible to describe junction effects in a very concise way. Such a representation is crucial for the design of complex systems containing many interacting parts. Using scattering matrices, we characterize symmetric junctions between 2-D metal--insulator--metal (MIM) waveguides with optical signals at infrared frequencies (1550 nm) propagating in them. We verify our characterization by perfectly matching a wavelength-sized MIM waveguide to a subwavelength-sized one using a Smith chart. We then map the scattering matrix description to an equivalent lumped circuit representation and discuss the physical significance of its elements. We show that the simplified characteristic impedance model is appropriate for the deep subwavelength regime. The scattering matrix model for the MIM junctions leads to simplified analysis that can be integrated into circuit modeling software packages, such as SPICE.
机译:在微波网络中,通常使用传输线和集总电路元件对波导结进行建模。借助散射矩阵形式主义,可以非常简洁地描述结效应。这样的表示对于包含许多相互作用部分的复杂系统的设计至关重要。我们使用散射矩阵来表征二维金属-绝缘体-金属(MIM)波导之间的对称结,并在其中传播的是红外频率(1550 nm)的光信号。我们通过使用史密斯圆图将一个波长大小的MIM波导与一个亚波长大小的波导完美匹配来验证我们的表征。然后,我们将散射矩阵描述映射到等效的集总电路表示形式,并讨论其元素的物理意义。我们表明,简化的特征阻抗模型适用于深亚波长范围。 MIM结的散射矩阵模型可以简化分析,可以将其集成到SPICE等电路建模软件包中。

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