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High Sensitive Micro-Displacement Sensor Based on M-Z Interferometer by a Bowknot Type Taper

机译:蝴蝶结型锥度基于M-Z干涉仪的高灵敏度微位移传感器

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摘要

A simple, compact, and high sensitive optical fiber Mach-Zehnder interferometer (MZI) based micro-displacement sensor is presented. The MZI is fabricated by a core offset connecting of two single-mode fibers and bowknot-type taper. The shifts of the MZI transmission spectrum correspond to the micro-displacements on the cross section of the core offset. For the micro-displacement ranging from 0 to 13 μm, the proposed sensor shows a high sensitivity of -1.89 dB/μm, which is almost 787 times higher than that of the current similar existing micro-displacement sensor. In addition by using the intensity demodulation method, the proposed sensor can overcome the temperature and displacement cross-sensitivity effects.
机译:提出了一种简单,紧凑,高灵敏度的基于光纤的马赫曾德尔干涉仪(MZI)的微位移传感器。 MZI由两个单模光纤和蝴蝶结型锥度的芯偏移连接而成。 MZI透射谱的位移对应于磁心偏移截面上的微位移。对于范围从0到13μm的微位移,所提出的传感器显示出-1.89 dB /μm的高灵敏度,这几乎是当前类似的现有微位移传感器的787倍。另外,通过使用强度解调方法,该传感器可以克服温度和位移的交叉敏感效应。

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