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基于石墨烯表面等离子体共振的光子晶体光纤用于高灵敏度太赫兹折射率传感。

Photonic crystal fiber based on graphene surface plasmon resonance for high-sensitivity terahertz refractive index sensing.

作者信息

He Jie, Wang Jianxin, Liu Wei, Lu Xili, Lv Jingwei, Yang Lin, Chu Paul K, Liu Chao

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2024 Jul 1;41(7):1279-1286. doi: 10.1364/JOSAA.521774.

Abstract

A photonic crystal fiber (PCF) sensor based on surface plasmon resonance (SPR) with a graphene coating on the cladding is designed for refractive index (RI) detection in the range of 0.3-0.5 THz, especially for liquid bioanalytical sensing. The adjustability of the graphene chemical potential ( ) enables dynamic tuning of the loss spectra over a wide frequency range with a tuning sensitivity of 570 GHz/eV at the SPR frequency. According to the analysis by the finite element method (FEM), the highest wavelength sensitivity and maximum amplitude sensitivity of 4254.11 µm/RIU and 25.62 ( =1.34) are achieved in the RI range of 1.15-1.35, respectively, together with a resolution of 5.93×10 . The graphene PCF-SPR sensor boasting high-sensitivity detection in a wide RI range has broad application prospects in multiple fields.

摘要

一种基于表面等离子体共振(SPR)的光子晶体光纤(PCF)传感器被设计出来,其包层带有石墨烯涂层,用于在0.3 - 0.5太赫兹范围内进行折射率(RI)检测,尤其适用于液体生物分析传感。石墨烯化学势( )的可调性能够在很宽的频率范围内动态调谐损耗光谱,在SPR频率下的调谐灵敏度为570吉赫兹/电子伏特。根据有限元方法(FEM)分析,在1.15 - 1.35的RI范围内,分别实现了最高波长灵敏度4254.11微米/RIU和最大幅度灵敏度25.62 ( =1.34),分辨率为5.93×10 。这种在宽RI范围内具有高灵敏度检测能力的石墨烯PCF - SPR传感器在多个领域具有广阔的应用前景。

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