用于折射率生物传感的高灵敏度太赫兹电磁诱导透明类超表面

Tomas Pires, Shohreh Nourinovin, H. Abbas, M. Imran, A. Alomainy, Q. Abbasi
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摘要

在这项研究中,我们提出了一种类似电磁感应透明(eit)的超表面。该结构由一对l型谐振器组成,通过增加耦合谐振器之间的不对称性,在2.84 THz处激发出暗模式的透明峰。基于不同不对称程度的透射光谱显示出类似eit共振的增强趋势。研究了电磁场和表面电流的分布,证明了暗模激励的存在。研究了该生物传感器在不同折射率和样品厚度下的传感性能,在230 GHZ窄带线宽下实现了800 GHZ/RIU的总理论灵敏度。结果还与类似的研究工作进行了比较,证明了灵敏度和q因子的大幅提高。所提出的结构可以作为一种超灵敏、廉价和无标签的生物传感器,用于包括生物传感在内的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Highly Sensitive Terahertz Electromagnetically Induced Transparency-like Metasurface for Refractive Index Biosensing
In this research, we presented an electromagnetically induced transparency-like (EIT-like) metasurface. The structure is composed of pairs of L-shaped resonators, and by increasing the asymmetry between the coupled resonators, the dark mode has been excited with a transparency peak at 2.84 THz. The transmission spectra based on various asymmetry degree shows the intensifying trend of EIT-like resonance. The distribution of the electromagnetic field and the surface current were also examined to demonstrate the dark mode excitation. The sensing performance of the biosensor was studied based on various refractive index and thicknesses of the sample, and a total theoretical sensitivity of 800 GHZ/RIU based on a narrow line width of 230 GHz was achieved. The results also were compared with similar research works and proved a massive enhancement in sensitivity and Q-factor. The proposed structure can be served as an ultra-sensitive, inexpensive, and label-free biosensor for applications including biological sensing.
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