Frequency Response Analysis of Octagonal Complementary Split Ring Resonator-Based Metamaterial

S. K, E. B, Nandha Kumar T K, Lavanya B
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引用次数: 2

Abstract

Terahertz (THz) study experienced a remarkable advance in recent years. THz filters are utilized for controlling THz signals in the applications of the THz region. The difficulties in designing THz filters are their higher bandwidth, changeable resonance frequency, low return loss, and low insertion loss. This article examines the frequency response of a metamaterial based on an octagonal complementary split ring resonator (O-CSRR). The proposed O-CSRR is simulated on COMSOL Multiphysics. The results display good performance on filter parameters like resonant frequency range 7.3 THz to 7.8 THz, 1.3 THzof 3-dB, -25.17 dB of return loss(RL), insertion loss(IL) of 0 and transmittance of 100%. The proposed O-CSRR THz filter finds application in THz communication, screening, imaging, etc.
基于八角形互补裂环谐振器的超材料频响分析
近年来,太赫兹(THz)的研究取得了显著进展。太赫兹滤波器在太赫兹区域的应用中用于控制太赫兹信号。太赫兹滤波器设计的难点在于其高带宽、可变谐振频率、低回波损耗和低插入损耗。本文研究了基于八角形互补裂环谐振器(O-CSRR)的超材料的频率响应。在COMSOL Multiphysics上对所提出的O-CSRR进行了仿真。结果表明,在谐振频率范围7.3 ~ 7.8 THz、1.3 THz为3-dB、回波损耗为-25.17 dB、插入损耗为0、透过率为100%等滤波器参数下,该滤波器性能良好。所提出的O-CSRR太赫兹滤波器可应用于太赫兹通信、筛选、成像等领域。
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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