首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Simultaneous measurement of refractive index and temperature based on half-tapered SMS fiber structure with fringe-visibility difference demodulation method
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Simultaneous measurement of refractive index and temperature based on half-tapered SMS fiber structure with fringe-visibility difference demodulation method

机译:基于半锥形SMS纤维结构的折射率和温度同时测量具有条纹可见性差异解调方法

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摘要

A novel fiber-optic sensor is demonstrated based on half-tapered single-mode-multimode-single-mode fiber structure, which consists of the multimode interferometer (MMI) and Mach-Zehnder interferometer (MZI). The comprehensive experiments in terms of temperature and refractive index (RI) are performed and the immunity to varied RI is observed in MMI. Further, to enhance precision of measurement, the fringe-visibility difference (FVD) based demodulation method is proposed to quantify and eliminate the influences from the fluctuations of light source power and ambient temperature. The corrected sensitivities present high linearity (0.99) and the detecting resolution reaches 0.072 degrees C and 2.89 x 10(-5) RIU, respectively. With FVD, our sensor can complete simultaneous measurement of RI and temperature without the crosstalk from light source power and ambient temperature.
机译:基于半锥形单模 - 多模 - 单模光纤结构来说明新型光纤传感器,该光纤由多模干涉仪(MMI)和Mach-Zehnder干涉仪(MZI)组成。 在温度和折射率(RI)方面进行综合实验,并在MMI中观察到改变的RI的免疫。 此外,为了提高测量精度,提出了基于条纹的解调差(FVD)的解调方法来量化和消除来自光源功率电力和环境温度的波动的影响。 校正的敏感性存在高线性度(& 0.99),检测分辨率分别达到0.072℃和2.89×10(-5)Riu。 通过FVD,我们的传感器可以在没有光源功率和环境温度的情况下立即同时测量RI和温度,而无串扰。

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