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基于环形偶极子共振的高灵敏度偏振无关太赫兹太极样微环传感器用于Aβ蛋白浓度检测

High-sensitivity polarization-independent terahertz Taichi-like micro-ring sensors based on toroidal dipole resonance for concentration detection of Aβ protein.

作者信息

Liu Wencan, Zhou Xinwei, Zou Shucai, Hu Zhengguang, Shen Yun, Cai Mengqiang, Lin Dongdong, Zhou Jia, Deng Xiaohua, Guo Tianjing, Lei Jiangtao

机构信息

Department of Physics, School of Physics and Materials Science, Nanchang University, Xuefu Avenue 999, Nanchang City 330031, China.

Institute of Space Science and Technology, Nanchang University, Xuefu Avenue 999, Nanchang City 330031, China.

出版信息

Nanophotonics. 2023 Feb 24;12(6):1177-1187. doi: 10.1515/nanoph-2023-0010. eCollection 2023 Mar.

Abstract

Terahertz (THz) metamaterial sensor is a newly-developing interdisciplinary technology, which combines the essential characteristics of THz spectroscopy and metamaterials, to obtain better sensitivity for trace detection of the different target analytes. Toroidal dipole resonances show great sensing potential due to their suppression of the radiative loss channel. Here, we found a high-quality planar toroidal dipole resonance in the breaking Chinese Taichi-like ring and then designed a novel polarization-independent terahertz toroidal sensor by combining four Taichi-like rings into a cycle unit. The sensor shows high-sensitivity sensing characteristics for the ultrathin analyte and refractive index. The optimized sensitivity of pure analytes under 4 μm coating thickness can numerically reach 258 GHz/RIU in the corresponding ∼1.345 THz frequency domain, which is much higher than that of previously reported sensors. We further fabricated experimentally the sensor and demonstrated its fascinating polarization-independent characteristics. Finally, it was successfully applied to the low-concentration detection (ranging from 0.0001 mg/mL to 10 mg/mL) of Aβ protein associated with Alzheimer's disease. Our high-sensitivity polarization-independent THz toroidal dipole sensor would give access to rich applications in label-free biosensing.

摘要

太赫兹(THz)超材料传感器是一项新兴的跨学科技术,它结合了太赫兹光谱学和超材料的基本特性,以获得对不同目标分析物痕量检测的更高灵敏度。环形偶极子共振由于其对辐射损耗通道的抑制而显示出巨大的传感潜力。在此,我们在破损的类中国太极环中发现了高质量的平面环形偶极子共振,然后通过将四个类太极环组合成一个周期单元设计了一种新型的与偏振无关的太赫兹环形传感器。该传感器对超薄分析物和折射率显示出高灵敏度传感特性。在4μm涂层厚度下,纯分析物的优化灵敏度在相应的约1.345太赫兹频域中数值上可达258 GHz/RIU,远高于先前报道的传感器。我们进一步通过实验制作了该传感器,并展示了其引人入胜的与偏振无关的特性。最后,它成功应用于与阿尔茨海默病相关的Aβ蛋白的低浓度检测(范围从0.0001 mg/mL到10 mg/mL)。我们的高灵敏度与偏振无关的太赫兹环形偶极子传感器将在无标记生物传感中获得丰富的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4c8/11501499/f83880e8ce48/j_nanoph-2023-0010_fig_001.jpg

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