基于锥形光纤和球形结构的双参量光纤传感器
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(湖北师范大学 物理与电子科学学院,湖北 黄石 435002)

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刘昌宁(1981-),男,博士,硕 士生导师,研究方向为飞秒激光微加工和光纤传感技术.

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2020年度湖北省高等学校优秀中青年科技创新团队计划项目(T2020014)和湖北师范大学研究生创新项目(20220501) 资助项目


Dual-parameter optical fiber sensors based on tapered fibers and spherical structures
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(College of Physics and Electronic Science,Hubei Normal University,Huangshi,H ubei 435002, China)

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    摘要:

    本文设计了一款球-细芯-球结构的双参量光纤 传感器,再通过光纤拉锥,对光纤传感 器的折射率和轴向应变特性进行了前后对比,通过实验和理论分析可知,双球结构之间的细芯拉 锥后,对传感器的应变和锥部区域的折射率灵敏度影响较大。该实验结构简单,制作方便, 易于重复。该结构制作的双参量光纤传感器在拉锥后,锥部区域的折射率灵敏度比拉锥前提 高了两倍以上,达到50.53 nm/RIU,而轴向应变灵敏度也比拉锥前提 高了两倍左右,可达到 2.908 pm/με,实验结果基本符合理论推导。

    Abstract:

    A dual-parameter optical fiber sensor with a ball-fine core-ball st ructure is designed, and then the refractive index and axial strain characteristics of the optical fi ber sensor are compared before and after the optical fiber is tapered.Through experimental and theoreti cal analysis,it is known that,after the fine core between the two- ball structure is drawn,it has a greater impact on the strain of the sensor and the sensitivity of the refractive index in the tapered area.The experimenta l structure is simple, convenient to manufacture and easy to repeat.After the tapering of the dual-pa rameter optical fiber sensor fabricated by this structure,the refractive index sensitivity of the tap ered area is more than twice that of before the tapering,reaching 50.53 nm/RIU,and the axial strain se nsitivity is also twice as high as that before the tapering.At about 2.908 pm/με,the experimental res ults are basically in line with the theoretical derivation.

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陈宁,江超,刘昌宁.基于锥形光纤和球形结构的双参量光纤传感器[J].光电子激光,2022,33(7):694~699

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  • 收稿日期:2021-10-24
  • 最后修改日期:2021-12-14
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  • 在线发布日期: 2022-08-17
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