迈克尔逊干涉仪
光学
材料科学
干涉测量
光纤传感器
包层(金属加工)
折射率
光纤
温度测量
熔接
多模光纤
渐变折射率纤维
单模光纤
波长
菲涅耳方程
保偏光纤
谱线
光电子学
物理
天文
量子力学
冶金
作者
Siti Musliha Aishah Musa,Nur Faizzah Baharin,Asrul Izam Azmi,Raja Kamarulzaman Raja Ibrahim,Ahmad Sharmi Abdullah,Muhammad Yusof Mohd Noor,Haifeng Qi
摘要
Abstract An all‐fiber Michelson interferometer based on double‐clad fiber (DCF) is proposed for temperature and refractive index (RI) sensing. The sensor is formed by continuous splicing between single mode fiber, multimode fiber, and DCF. Temperature measurement is achieved by monitoring the dip wavelength shift of the interferometer spectra resulting from thermo‐optic effect on core and first cladding of DCF. RI measurement is established from the power change in spectra due to the Fresnel's reflection at the DCF tip. Experimental result on 18.5 mm sensor manifests that temperature and RI responses are distinguishable. For instance, power level at 1540.5 nm exhibits quadratic shift to RI changes while unaffected to temperature changes. Dip wavelengths of sensor spectra demonstrate linear shift to temperature changes while unaffected by RI changes. The proposed sensor is cost effective as sensor fabrication only requires conventional splicing. Sensor capability to distinguish temperature and RI parameters makes it practical for broad range applications including for biomedical and food industries.
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