Design of a Novel THz Metamaterial Based on Combination of Different Split-Ring Resonators

Fatemeh Aghaei, H. Bahador, S. Golmohammadi
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引用次数: 1

Abstract

Increasing demand for the identification of nanoparticles with good precision and high selectivity has led to a significant growth of the use of optical sensors. In this paper, to response to this necessity, the structure of a terahertz metamaterial sensor based on O-shaped, cross and perfect resonators has been presented. The substrate material is GaAs and layers of Au are employed to construct the metamaterial structure. The sensitivity and figure of merit (FOM) are equal to 824 GHz/RIU and 2.42 RIU-I, respectively. The reason for such high accuracy in sensitivity is the presence of the perfect ring in the structure. Without this ring, we see around 200 GHz/RIU reduction in the sensitivity. The designed structure can be used in medicine to identify various tissues and viruses due to its sensitivity and having an operating frequency of 0.2-2 THZ.
基于不同分裂环谐振腔组合的新型太赫兹超材料的设计
对高精度、高选择性纳米颗粒识别的需求日益增长,导致光学传感器的使用显著增长。本文针对这一需求,提出了一种基于o形、交叉和完美谐振腔的太赫兹超材料传感器结构。衬底材料为砷化镓(GaAs),并采用层状金(Au)构建超材料结构。灵敏度为824 GHz/RIU,质量因数(FOM)为2.42 RIU- i。灵敏度如此之高的原因是在结构中存在完美的环。没有这个环,我们看到灵敏度降低了200 GHz/RIU左右。所设计的结构灵敏度高,工作频率为0.2-2太赫兹,可用于医学中识别各种组织和病毒。
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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