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Metamaterial claddings for homotopic control of waveguide modes

机译:用于波导模式同质控制的超材料包层

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In this paper, we explore this property in a new context: to design metamaterial blueprints for waveguide claddings. By using the proposed metamaterial claddings, better mode uniformity/confinement can be obtained with a precise control of the corresponding frequency waveguide cutoffs. In contrast to traditional (dielectric) loading of waveguides, the proposed metamaterial cladding does not produce hybrid modes. Instead, each resulting waveguide mode is homotopic to a canonical (hollow waveguide) mode, i.e., the former can be obtained from a continuous deformation of the latter. Physically, this means that inside the cladding, the mode is identical to the mode that would exist in a hollow waveguide of a different radius. For simplicity, we illustrate the design for PEC cylindrical waveguides, but the same basic idea applies to other types of PEC waveguides.
机译:在本文中,我们将在新的背景下探索这一特性:设计用于波导包层的超材料蓝图。通过使用提出的超材料包层,可以通过精确控制相应的频率波导截止来获得更好的模式均匀性/约束性。与传统的(电介质)波导加载相反,所提出的超材料包层不会产生混合模式。取而代之的是,每个得到的波导模式与规范(空心波导)模式是同位的,即,前者可以从后者的连续变形中获得。从物理上讲,这意味着在包层内部,该模式与半径不同的空心波导中的模式相同。为简单起见,我们说明了PEC圆柱波导的设计,但是相同的基本思想也适用于其他类型的PEC波导。

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