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Vibration Sensor Based on the Resonance Power Leakage in a Tapered Capillary Fiber

机译:锥形毛细纤维中基于谐振功率泄漏的振动传感器

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摘要

A compact all-fibre vibration sensor based on power leakage at resonance wavelengths of a tapered capillary fiber is proposed and experimentally demonstrated. A section of the capillary fiber was selectively etched by using hydrofluoricacid, which formed a tapered region in the capillary fiber. Two Fabry-Pérot resonators are formed in the same capillary fiber due to the differences in cladding between the tapered region and original cladding. The leaky mode of the guided light can be achieved at resonant wavelengths of two Fabry-Pérot resonators, which results in lossy dips in the transmission spectrum of the capillary fiber. The tapered region in the capillary fiber is supposed to be slightly bent due to the vibration, which results in a change of the resonance condition for one Fabry-Pérot resonator due to the photoelastic effect. The experimental results show that a signal-to-noise ratio of 60 dB is achieved, and the fibre vibration sensor has a wide frequency response from 5 to 10 kHz. The tapered capillary fibre possesses high sensitivity and low temperature cross sensitivity.
机译:提出并基于锥形毛细管纤维共振波长处的功率泄漏的紧凑型全纤维振动传感器,并进行了实验证明。通过使用氢氟酸选择性地蚀刻毛细管纤维的一部分,该氢氟酸在毛细管纤维中形成锥形区域。由于锥形区域和原始包层之间的包层不同,在同一根毛细纤维中形成了两个Fabry-Pérot谐振器。导光的泄漏模式可以在两个Fabry-Perot谐振器的谐振波长处实现,这会导致毛细管光纤的传输频谱出现有损下降。毛细管纤维中的锥形区域可能会由于振动而略微弯曲,这会由于光弹性效应而导致一个Fabry-Pe′rot谐振器的谐振条件发生变化。实验结果表明,实现了60 dB的信噪比,并且光纤振动传感器具有从5到10 kHz的宽频率响应。锥形毛细管纤维具有高灵敏度和低温交叉灵敏度。

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