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首页> 外文期刊>Applied optics >Direct airborne acoustic wave modulation of Fabry-Perot fiber laser (FPFL) over 100 kHz of operating bandwidth
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Direct airborne acoustic wave modulation of Fabry-Perot fiber laser (FPFL) over 100 kHz of operating bandwidth

机译:法布里-珀罗光纤激光器(FPFL)的直接机载声波调制在100 kHz的工作带宽上

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摘要

The idea of applying a simple Fabry-Perot fiber laser (FPFL) set-up in a free-running condition as an acoustic sensing medium is proposed. Conventional optical microphone requires a stringently aligned diaphragm to mediate the acoustic impedance mismatch between air and silica fiber. Motivated by the difficulty of optical sensing of airborne acoustic waves, a new sensing method is proposed to sense acoustic waves without the assistance of a diaphragm as transducer. By studying the output power fluctuation of the FPFL, the operating bandwidth and sensitivity of the proposed sensing method are determined. The tunability of the resonant frequency from 5 kHz to 85 kHz allows sensing of acoustic waves in the range of 100 Hz to 100 kHz. Tuning of the resonant frequency can be performed by changing the optical pumping power from as low as 10 mW to 68.5 mW or higher.
机译:提出了在自由运行条件下将简单的Fabry-Perot光纤激光器(FPFL)装置用作声传感介质的想法。常规的光学麦克风需要严格对准的振膜,以调解空气和石英纤维之间的声阻抗失配。由于对机载声波进行光学传感的困难,提出了一种无需膜片作为换能器即可感测声波的新传感方法。通过研究FPFL的输出功率波动,可以确定所提出的传感方法的工作带宽和灵敏度。谐振频率在5 kHz至85 kHz范围内可调,可检测100 Hz至100 kHz范围内的声波。可以通过将光泵浦功率从低至10 mW更改为68.5 mW或更高来执行谐振频率的调谐。

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