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Reconfigurable subwavelength waveguide based on magnetic metamaterial

机译:基于磁性超材料的可重构亚波长波导

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摘要

The design and characterization is described of a reconfigurable subwavelength waveguide based on magnetic metamaterial. The waveguide is capable of reconfiguring its propagating mode from right-handed to left-handed, which can be applied in the design of novel microwave and RF devices such as leaky wave antennas with broadened scanning range. The waveguide consists of a rectangular metallic waveguide loaded by two pieces of different magnetic metamaterials, which are structured by the same cells—modified split ring resonators (MSRRs)—with different arrangements. Positions of the two pieces of metamaterials in the waveguide can be reconfigured separately by the control mechanism. The simulated transmission data show that the waveguide has a passband below the cutoff frequency of the hollow waveguide either in the left-handed case or in the right-handed case. The extracted constitutive parameters have demonstrated that the effective permittivity and permeability of the waveguide are simultaneously negative in the left-handed case and positive in the right-handed case. The magnetic field and surface current distributions in the waveguide confirm that the waveguide operates as can be expected. The influence of the control mechanism on the performance of the waveguide is studied. It is shown that the influence is so minor that it can be neglected.
机译:描述了基于磁性超材料的可重构亚波长波导的设计和特性。该波导能够将其传播模式从右手重新配置为左手,可应用于新型微波和RF设备的设计,例如具有更宽扫描范围的漏波天线。该波导由一个矩形的金属波导组成,该金属波导由两片不同的磁性超材料加载,这些材料由相同的单元(改进的裂环谐振器(MSRR))以不同的结构构成。波导中两块超材料的位置可以通过控制机制分别重新配置。模拟的传输数据表明,在左手情况下或在右手情况下,波导的通带都低于空心波导的截止频率。提取的本构参数已经证明,波导的有效介电常数和磁导率在左手情况下同时为负,而在右手情况下为正。波导中的磁场和表面电流分布确定了波导可以按预期工作。研究了控制机制对波导性能的影响。结果表明,影响很小,可以忽略不计。

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