Highly sensitive terahertz polarization biosensor utilizing chiral metasurface

Jiu-sheng Li, Yao-Yao Xue, Feng-lei Guo
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Abstract

In order to achieve a highly sensitive biosensor with a simple structure, we propose a chiral metasurface polarization sensor. Using immunological surface plasmon resonance (SPR) detection, the antigen or antibody is fixed as a probe on the SPR metasurface to detect the corresponding antibody or antigen. Through the change of the refractive index of the analyte on the surface facial mask, the terahertz signal changes, and finally the sensing detection of avian influenza virus can be achieved. The designed metasurface adopts a hollow split sector chiral structure to generate chiral surface current, which can convert linearly polarized incident waves as elliptical polarized waves. The structure achieves the high sensitivity of 401 deg/RIU at frequency of 0.8THz, and the avian influenza virus (H1N1, H5N2 and H9N2) with the same real part of the refractive index can also be distinguished. Influenza viruses belong to the family Orthomyxoviridae of RNA viruses, divided into three types: A, B, and C. In this article, avian influenza viruses belong to type A influenza viruses. It can clearly identify different Avian Influenza Viruses by the two polarization characteristic parameters of the reflection spectrum PEA (Polarization Ellipse Angle) and PRA (Polarization Rotation Angle). This method has a significant application prospect in the fields of biomedicine and food industries.
利用手性元表面的高灵敏度太赫兹偏振生物传感器
为了以简单的结构实现高灵敏度的生物传感器,我们提出了一种手性元表面极化传感器。利用免疫学表面等离子体共振(SPR)检测技术,将抗原或抗体作为探针固定在 SPR 元表面上,检测相应的抗体或抗原。通过分析物在表面面罩上折射率的变化,太赫兹信号发生变化,最终实现对禽流感病毒的传感检测。所设计的元表面采用中空分裂扇形手性结构,产生手性表面电流,可将线性偏振入射波转换为椭圆偏振波。该结构在 0.8THz 频率下实现了 401 deg/RIU 的高灵敏度,并能区分折射率实部相同的禽流感病毒(H1N1、H5N2 和 H9N2)。流感病毒属于 RNA 病毒正粘病毒科,分为甲、乙、丙三型:本文中的禽流感病毒属于甲型流感病毒。通过反射光谱的两个偏振特性参数 PEA(偏振椭圆角)和 PRA(偏振旋转角),可以清晰地识别不同的禽流感病毒。该方法在生物医学和食品工业领域具有广阔的应用前景。
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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