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Low-Frequency Surface Plasmon Polaritons Guided on a Corrugated Metal Striplines with Subwavelength Periodical Inward Slits

机译:低频表面等离激元极化子在波纹金属带状线上引导,具有亚波长周期性的向内狭缝

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摘要

A new type of stripline-based microwave transmission, which has relatively lower crosstalk compared with the conventional striplines, is proposed. The structure is formed by corrugated inward slit that is subwavelength scale on the edge of the stripline via the photolithography techniques. Numerical simulation is used to analyze the transmission and dispersion properties of this new stripline structure, and the results are experimentally verified in the frequency range from 200 MHz to 8 GHz. We found that spoof surface plasmon polaritons are supported on the new stripline structure whose electromagnetic fields are highly localized near the stripline, and hence the coupling is suppressed between the present type of stripline and the conventional stripline. For a structured stripline and a conventional stripline which are parallelly placed and separated by a distance of the stripline width, the crosstalk between them ranges from -17.13 to -64.89 dB, which is much lower than the crosstalk between two coupled conventional striplines. As this new type of stripline has such an important advantage, it would be applicable to high-density microwave circuits or high-speed circuits.
机译:提出了一种新型的基于带状线的微波传输,与传统的带状线相比,其串扰相对较低。该结构由波纹状向内缝隙形成,该缝隙通过光刻技术在带状线的边缘上为亚波长尺度。数值模拟用于分析这种新型带状线结构的传输和色散特性,并在200 MHz至8 GHz的频率范围内对结果进行了实验验证。我们发现,欺骗表面等离子体激元极化子被支撑在新的带状线结构上,该结构的电磁场高度集中在带状线附近,因此抑制了当前类型的带状线和常规带状线之间的耦合。对于平行放置并以带状线宽度的距离隔开的结构化带状线和常规带状线,它们之间的串扰范围为-17.13至-64.89 dB,远低于两条耦合的常规带状线之间的串扰。由于这种新型的带状线具有如此重要的优势,因此可应用于高密度微波电路或高速电路。

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