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Application of MZI Symmetrical Structure With Fiber Balls and Seven-Core Fiber in Microdisplacement Measurement

机译:MZI纤维球与七芯光纤对称结构在微位移测量中的应用

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An optical fiber microdisplacement sensor based on symmetric Mach-Zehnder interferometer (MZI) with a seven-core fiber and two single-mode fiber balls is proposed. The rationality and manufacturing process of the MZI sensing structure are analyzed. The fabrication mechanism of the Mach-Zehnder sensor by CO~(2)laser is described in detail. Experimental results show that temperature sensitivities of the two dips are 98.65 pm/°C and 89.72 pm/°C, respectively. The microdisplacement sensitivities are 2017.71 pm/mm and 2457.92 pm/mm, respectively. The simultaneous measurement of temperature and microdisplacement is demonstrated based on the sensitive matrix. The proposed Mach-Zehnder interference sensor exhibits the advantages of compact structure, simple manufacturing process, and high reliability.
机译:提出了一种基于对称马赫曾德尔干涉仪(MZI)的光纤微位移传感器,该传感器具有七芯光纤和两个单模光纤球。分析了MZI传感结构的合理性和制造工艺。详细介绍了CO〜(2)激光制造Mach-Zehnder传感器的机理。实验结果表明,两次浸入的温度敏感性分别为98.65 pm /°C和89.72 pm /°C。微位移敏感性分别为2017.71 pm / mm和2457.92 pm / mm。基于敏感矩阵,可以同时测量温度和微位移。提出的马赫曾德尔干涉传感器具有结构紧凑,制造工艺简单和可靠性高的优点。

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