基于MZI与OEO的高灵敏度光纤磁场传感器
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吉林大学 电子科学与工程学院 集成光电子学全国重点实验室

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TN958

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吉林省科技发展计划项目(20220201 061 GX)


A High-Sensitivity Fiber Optic Magnetic Field Sensor Based on a Mach-Zehnder Interferometer and a Photoelectric Oscillator
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State Key Laboratory of Integrated Optoelectronics,College of Electronics Science and Engineering,Jilin University

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    摘要:

    本文提出了一种基于马赫-曾德干涉仪与光电振荡器的高灵敏度光纤磁场传感器。根据基于光电振荡器的传感器原理,建立了所设计的马赫-曾德尔干涉仪的波长灵敏度与光电振荡器的频率灵敏度之间的映射关系,揭示了光电振荡器的频率灵敏度随着波长灵敏度的增加而增大。本文中,马赫-曾德尔干涉仪是通过在两根单模光纤之间错位拼接一段锥形光纤来制造的,它可以将宽带光源发出的光切割成正弦形状的光。实验结果表明,在1.6mT–12.8mT范围内,该传感器的频率灵敏度为324Hz/mT,对应的测量误差在±0.96mT以内。

    Abstract:

    This paper proposes a high-sensitivity fiber magnetic field sensor based on a Mach-Zehnder interferometer and a photoelectric oscillator. According to the principle of the sensor based on the photoelectric oscillator, the relationship between the wavelength sensitivity of the designed Mach-Zehnder interferometer and the frequency sensitivity of the photoelectric oscillator is established, revealing that the frequency sensitivity of the photoelectric oscillator increases as the wavelength sensitivity increases. In this design, the Mach-Zehnder interferometer is constructed by splicing a tapered fiber between two single-mode fibers with an offset, which can split the light emitted by a broadband light source into sinusoidal-shaped waves. Experimental results show that within the magnetic field range of 1.6 mT to 12.8 mT, the frequency sensitivity of the sensor is 324 Hz/mT, with a corresponding measurement error within ±0.96mT.

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  • 收稿日期:2025-02-01
  • 最后修改日期:2025-03-26
  • 录用日期:2025-04-07
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