Spoof surface plasmon polaritons based tunable band notch filter for terahertz and microwave

P. Pal, S. Singh, N. Tiwari, M. Akhtar
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引用次数: 1

Abstract

A novel tunable band notch filter which consists of a coplanar waveguide and a corrugated metallic strip with horn shaped arms is presented for terahertz (THz) and microwave applications. The corrugated metallic strip with horn shaped arms offer more attenuation to EM wave than the corrugated metallic strip with conventional rectangular arms as the horn shape provides more area for the efficient trapping of the spoof surface plasmon polaritons (SSPPs), which results in the reduction of the overall size of the filter. The effect of the single defect and multiple defects at various locations are studied and analyzed in the THz and microwave region, using full wave numerical simulator CST. The study shows that the desired center frequency of the band stop and attenuation could be achieved by adjusting the position of the defects and their physical dimensions. The attenuation level and tuning frequency range is more for the proposed filter in comparison to the filter based on the corrugated metallic strip with conventional rectangular shaped. The experimental verification of the proposed tunable band notch filter is carried out in the microwave frequency band by fabricating the scaled up version, and measuring the transmission coefficient data using the network analyzer.
基于表面等离子激元的太赫兹和微波可调带陷波滤波器
提出了一种用于太赫兹(THz)和微波的新型可调谐带陷波滤波器,该滤波器由共面波导和带喇叭形臂的波纹金属带组成。喇叭形臂的波纹金属带比传统矩形臂的波纹金属带对电磁波有更好的衰减,因为喇叭形的金属带为有效捕获假轨表面等离子激元(SSPPs)提供了更多的面积,从而减小了滤波器的整体尺寸。利用全波数值模拟器CST,研究和分析了太赫兹和微波区单缺陷和多缺陷在不同位置的影响。研究表明,通过调整缺陷的位置和缺陷的物理尺寸,可以获得理想的带阻和衰减中心频率。与传统矩形波纹金属条滤波器相比,该滤波器的衰减程度和调谐频率范围更大。通过制作放大版的可调谐带陷波滤波器,并利用网络分析仪测量传输系数数据,在微波频段对所提出的可调谐带陷波滤波器进行了实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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