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首页> 外文期刊>Journal of Lightwave Technology >High-Performance Bending Sensor Based on Femtosecond Laser-Inscribed in-Fiber Mach–Zehnder Interferometer
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High-Performance Bending Sensor Based on Femtosecond Laser-Inscribed in-Fiber Mach–Zehnder Interferometer

机译:基于飞秒激光的高性能弯曲传感器,纤维纤维机干涉仪

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A novel bending sensor based on an in-fiber MachZehnder interferometer (MZI) has been fabricated by femtosecond laser. The MZI is formed by an off-axial straight waveguide inscribed in a no-core fiber spliced between two standard single mode fibers. The in-fiber MZI is formed due to the interference of a fundamental mode and a higher-order mode which excited in the no-core fiber. Analysis results of the structure agree well with themeasured transmission spectra. Experimental results showthat the device has low temperature crosstalk and high curvature sensitivity of 14.91 nm/m-1 and 12.86 nm/m-1 for the 0 degrees and 180 degrees orientations in the range of 0-3 m-1, respectively. We can distinguish the bending orientation of the device by the shift direction of the spectrum. The advantages of high sensitivity, low temperature crosstalk, compact structure, and easy fabrication make the device attractive for actual engineering bend sensing.
机译:基于纤维型Machzehnder干涉仪(MZI)的新型弯曲传感器由飞秒激光制造。 MZI由截止轴向直波导形成,刻在两个标准单模纤维之间的无芯光纤中。由于基本模式的干涉和在无核心光纤中激发的高阶模式,形成纤维的MZI。该结构的分析结果与对透射谱进行良好。实验结果表明,该装置具有低温串扰和高曲率敏感性为14.91nm / m-1和12.86nm / m-1,分别为0-3 m-1的180度取向。我们可以通过频谱的换档方向区分器件的弯曲取向。灵敏度高,低温串扰,结构紧凑且易于制造的优点使器件对实际工程弯曲感应具有吸引力。

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