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All-fiber MZI sensor based on seven-core fiber and fiber ball symmetrical structure

机译:基于七芯光纤和光纤球对称结构的全光纤MZI传感器

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摘要

An all-fiber and compact Mach-Zehnder interferometric (MZI) sensor is proposed and experimentally demonstrated. The sensor with symmetrical structure is fabricated by splicing a segment 7 mm length of seven-core fiber (SCF) and two single-mode fiber (SMF) ball. The mode field of the fiber ball used in our experiments close to the region of hexagonally distributed fiber cores of the SCF, which is helpful to obtain a high coupling efficiency. Such an MZI could be used to realize the measurement of temperature and curvature. The temperature sensitivities is 76.38pm/degrees C with the linearity 0.9855 in the range of 50-130 degrees C, and the curvature sensitivities 19.60 dB/m(-1) via the intensity modulation of interference fringes, with a linearity 0.9911 at the range of 0.5-1 m(-1). That is, the MZI-based sensor overcomes the cross-sensitivity problem between curvature and temperature by means of different demodulation methods. Moreover, the proposed MZI sensor exhibits the advantages of more compact structure (only about 8 mm), simple manufacturing process and high reliability.
机译:提出并通过实验证明了一种全光纤,紧凑型Mach-Zehnder干涉(MZI)传感器。具有对称结构的传感器是通过将一段7 mm长的七芯光纤(SCF)和两个单模光纤(SMF)球拼接在一起而制成的。我们的实验中使用的光纤球的模场靠近SCF的六边形分布的纤维芯区域,这有助于获得较高的耦合效率。这种MZI可用于实现温度和曲率的测量。温度灵敏度为76.38pm /℃,线性度为0.9855,范围为50-130摄氏度,曲率灵敏度为19.60 dB / m(-1),通过干涉条纹的强度调制,线性度为0.9911 0.5-1 m(-1)。也就是说,基于MZI的传感器通过不同的解调方法克服了曲率和温度之间的交叉敏感问题。而且,提出的MZI传感器具有结构更紧凑(仅约8mm),制造工艺简单和可靠性高的优点。

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