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基于法布里-珀罗标准具的高Q共振效应的微光纤声学传感器。

Micro-fiber-optic acoustic sensor based on high-Q resonance effect using Fabry-Pérot etalon.

作者信息

Chen Jiamin, Xue Chenyang, Zheng Yongqiu, Wu Liyun, Chen Chen, Han Yuan

出版信息

Opt Express. 2021 May 24;29(11):16447-16454. doi: 10.1364/OE.418736.

Abstract

A micro-fiber-optic acoustic sensor based on the high-quality-factor (high-Q) resonance effect that uses a Fabry-Pérot etalon (FPE) is presented in this study. The device has been demonstrated experimentally to be a high-sensitivity acoustic sensor with a large dynamic range over a wide frequency band. Optical contact technology was used to improve the robustness of the FPE, which consists of two parallel lenses with high reflectivity exceeding 99%. An acoustic signal detection system based on phase modulation spectrum technology was also constructed. A stable and high-Q value of 10 was measured for the FPE. As a result, high sensitivity of 177.6 mV/Pa was achieved. Because of the change in the refractive index of the air when it is modulated by the acoustic waves, a frequency response of 20 Hz-70 kHz with flatness of ±2 dB was obtained and a large dynamic range of 115.3 dB was measured simultaneously. The excellent performance of the device will be beneficial for optical acoustic sensing.

摘要

本研究提出了一种基于高品质因数(高Q)共振效应的微光纤声学传感器,该传感器采用了法布里-珀罗干涉仪(FPE)。实验证明,该装置是一种高灵敏度声学传感器,在宽频带上具有较大的动态范围。采用光学接触技术提高了FPE的鲁棒性,FPE由两个反射率超过99%的平行透镜组成。还构建了基于相位调制光谱技术的声学信号检测系统。测得FPE的稳定高Q值为10。结果,实现了177.6 mV/Pa的高灵敏度。由于声波调制空气时空气折射率的变化,获得了20 Hz - 70 kHz的频率响应,平整度为±2 dB,同时测得115.3 dB的大动态范围。该装置的优异性能将有利于光声传感。

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