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基于渐变折射率多模光纤内嵌长周期光纤光栅的应变、弯曲、折射率无关型温度传感器。

Strain, bending, refractive index independent temperature sensor based on a graded index multimode fiber embedded long period fiber grating.

作者信息

Niu Huiwen, Chen Wenhuan, Liu Yue, Jin Xiren, Li Xiang, Peng Feng, Geng Tao, Zhang Shuo, Sun Weimin

出版信息

Opt Express. 2021 Jul 19;29(15):22922-22930. doi: 10.1364/OE.430168.

Abstract

A novel embedded ultra-long period fiber grating (EULPFG) based on a graded index multimode fiber (GI-MMF) is proposed for temperature measurement. Due to the small RI difference of the modes near the GI-MMF self-imaging point, the resonant peak of transmission spectrum is wavelength-insensitive to refractive index (RI), strain and bending. However, the sensor is sensitive to temperature. The experimental results show that the temperature sensitivity of the EULPFG is 90.77 pm/°C. The sensitivities of other physical parameters are suppressed, and the suppressed sensitivities are at least one order of magnitude less than those of similar sensors. The EULPFG with anti-interference from other parameters is expected to be used in ocean monitoring systems to measure the temperature of the seawater.

摘要

提出了一种基于渐变折射率多模光纤(GI-MMF)的新型嵌入式超长周期光纤光栅(EULPFG)用于温度测量。由于GI-MMF自成像点附近模式的折射率差较小,传输光谱的谐振峰对折射率(RI)、应变和弯曲在波长上不敏感。然而,该传感器对温度敏感。实验结果表明,EULPFG的温度灵敏度为90.77 pm/°C。其他物理参数的灵敏度受到抑制,且抑制后的灵敏度比同类传感器至少低一个数量级。这种具有抗其他参数干扰能力的EULPFG有望用于海洋监测系统中测量海水温度。

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