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Highly Sensitive Strain Sensor Based on a Novel Mach-Zehnder Interferometer with TCF-PCF Structure

机译:基于新型TCF-PCF结构的Mach-Zehnder干涉仪的高灵敏度应变传感器

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摘要

A highly sensitive strain sensor based on a novel fiber in line Mach-Zehnder interferometer (MZI) was demonstrated experimentally. The MZI was realized by splicing a section of photonic crystal fiber (PCF) with the same length of thin core fiber (TCF) between two single mode fibers (SMFs). The fringe visibility of MZI can reach as high as 20 dB in air. In particular, the strain sensitivity of −1.95 pm/με was achieved within a range from 0 to 4000 με. Furthermore, the strain properties of different length of MZI was investigated. It was found that the sensitivity was weekly dependent on the length of MZI. The strain sensitivities corresponding to the MZI with 35 mm PCF, 40 mm PCF and 45 mm PCF at 1550 nm band were −1.78 pm/με, −1.73 pm/με and −1.63 pm/με, respectively. Additionally, the sensor has advantages of simple fabrication, compact size and high sensitivity as well as good fringe visibility.
机译:实验证明了一种基于新型光纤在线马赫曾德尔干涉仪(MZI)的高灵敏度应变传感器。通过在两个单模光纤(SMF)之间拼接一段具有相同长度的薄芯光纤(TCF)的光子晶体光纤(PCF)来实现MZI。在空气中,MZI的边缘可见性可以高达20 dB。特别地,在0至4000μs的范围内实现了-1.95pm /μs的应变敏感性。此外,研究了不同长度的MZI的应变特性。发现灵敏度每周取决于MZI的长度。对应于在1550 nm波段具有35 mm PCF,40 mm PCF和45 mm PCF的MZI的应变敏感性分别为-1.78 pm /με,-1.73 pm /με和-1.63 pm /με。另外,该传感器具有制造简单,尺寸紧凑,灵敏度高以及条纹可见性好的优点。

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