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用于折射率传感的具有高灵敏度和可调动态范围的微波光子光纤干涉仪。

Microwave-photonic optical fiber interferometers for refractive index sensing with high sensitivity and a tunable dynamic range.

作者信息

Zhu Chen, Huang Jie

出版信息

Opt Lett. 2021 May 1;46(9):2180-2183. doi: 10.1364/OL.420618.

Abstract

We propose and demonstrate an extremely simple yet novel sensing strategy for measurements of a refractive index (RI) based on microwave-photonic optical fiber interferometry. A hybrid interferometric system based on an incoherent optical interferometer (i.e., a Michelson interferometer [MI]) and a coherent optical interferometer (i.e., a Fabry-Perot interferometer [FPI]) is constructed simply by using a low-cost off-the-shelf fiber coupler. The sensing arm of the MI is highly sensitive to a surrounding RI based on Fresnel reflection, where variations of the ambient RI cause changes in both the reflection magnitudes of the resonance frequencies and fringe visibility of the reflection spectra in the microwave domain. The coherent FPI is employed to tune the dynamic range of the MI by adjusting the effective reflectance of the reference arm of the MI. Essentially, other approaches that can vary the reflectance of the reference arm of the MI can also be used to tune the dynamic range of the system based on the proposed strategy. The experimental results are in good agreement with theoretical predictions. The prominent advantages of the sensor, including low cost, ease of fabrication, robustness, compactness, high sensitivity, and tunable dynamic range, make it a strong candidate in various chemical, biological, and environmental applications.

摘要

我们提出并演示了一种基于微波光子光纤干涉测量法来测量折射率(RI)的极其简单却新颖的传感策略。一种基于非相干光学干涉仪(即迈克尔逊干涉仪[MI])和相干光学干涉仪(即法布里-珀罗干涉仪[FPI])的混合干涉系统,只需使用一个低成本的现成光纤耦合器即可简单构建。MI的传感臂基于菲涅尔反射对周围的RI高度敏感,其中环境RI的变化会导致微波域中共振频率的反射幅度和反射光谱的条纹可见度发生变化。相干FPI用于通过调整MI参考臂的有效反射率来调节MI的动态范围。本质上,其他能够改变MI参考臂反射率的方法也可用于基于所提出的策略来调节系统的动态范围。实验结果与理论预测高度吻合。该传感器的显著优点,包括低成本、易于制造、坚固性、紧凑性、高灵敏度和可调动态范围,使其成为各种化学、生物和环境应用中的有力候选者。

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