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基于纳米厚银膜片的DBR光纤激光器中采用自混合技术的高精度光纤光学麦克风。

High-accuracy fiber optical microphone in a DBR fiber laser based on a nanothick silver diaphragm by self-mixing technique.

作者信息

Du Zhengting, Lu Liang, Zhang Wenhua, Yang Bo, Wu Shuang, Zhao Yunhe, Xu Feng, Wang Zhiping, Gui Huaqiao, Liu Jianguo, Yu Benli

出版信息

Opt Express. 2013 Dec 16;21(25):30580-90. doi: 10.1364/OE.21.030580.

Abstract

A high-accuracy fiber optical microphone (FOM) is first applied by self-mixing technique in a DBR fiber laser based on a nanothick silver diaphragm. The nanothick silver diaphragm fabricated by the convenient and low cost electroless plating method is functioned as sensing diaphragm due to critically susceptible to the air vibration. Simultaneously, micro-vibration theory model of self-mixing interference fiber optical microphone is deduced based on quasi-analytical method. The dynamic property to frequencies and amplitudes are experimentally carried out to characterize the fabricated FOM and also the reproduced sound of news and music can clearly meet the ear of the people which shows the technique proposed in this paper guarantee steady, high signal-noise ratio operation and outstanding accuracy in the DBR fiber laser which is potential to medical and security applications such as real-time voice reproduction for throat and voiceprint verification.

摘要

一种高精度光纤麦克风(FOM)首次通过自混合技术应用于基于纳米厚银膜片的分布布拉格反射(DBR)光纤激光器中。采用简便且低成本的化学镀方法制备的纳米厚银膜片,因其对空气振动极为敏感,故而用作传感膜片。同时,基于准解析方法推导出自混合干涉光纤麦克风的微振动理论模型。通过实验对所制备的FOM的频率和振幅动态特性进行了表征,并且重现的新闻和音乐声音能够清晰地被人耳听到,这表明本文所提出的技术保证了DBR光纤激光器稳定、高信噪比运行以及出色的精度,在医疗和安全应用中具有潜力,如喉部实时语音再现和声纹验证。

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