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Enlarged-taper tailored fiber Bragg grating with polyvinyl alcohol coating for humidity sensing

机译:扩大锥度定制纤维布拉格光栅用聚乙烯醇涂层用于湿度传感

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In this paper, a novel optical fiber sensor based on an enlarged-taper tailored fiber Bragg grating (FBG) is proposed and experimentally demonstrated for the measurement of relative humidity. The enlarged-taper works as a multifunctional joint that not only excites cladding modes but also recouples the cladding modes reflected by the FBG back into the leading single mode fiber. Due to the fact that cladding modes have a strong evanescent field penetrating into the ambient medium, the intensity of the reflected cladding modes is greatly influenced by the refractive index (RI) of the ambient medium. Polyvinyl alcohol (PVA) film is plated on the fiber surface by dip-coating technique, as a humidity-to-refractive index transducer, whose RI variance from 1.49 to 1.34 when the ambient humidity increases from 20%RH to 95%RH. The relative humidity response of the sensing structure is investigated in our home-made humidity chamber with a commercial hygrometer. By monitoring the intensity of the reflected cladding modes, the RH variance can be demodulated. Experimental results show that RH sensitivity depends on the RH value, and a sensitivity up to 1.2 dB/%RH can be achieved within the RH range of 30-90%. A fast and reversible time response has also been investigated. Such a probe-type and reusable fiber-optic RH sensor is a very promising technology for biochemical sensing applications, e.g., breath analysis, chemical reaction monitoring.
机译:本文提出了一种基于扩大锥度定制光纤布拉格光栅(FBG)的新型光纤传感器,并实验证明了相对湿度的测量。放大锥度作为多功能接头,不仅可以激励包层模式,而且还将由FBG反射的包层模式重新定位回领先的单模光纤。由于包层模式具有渗透到环境介质的强的渐逝场,反射包层的强度受到环境介质的折射率(RI)的大大影响。通过浸涂技术将聚乙烯醇(PVA)膜涂覆在纤维表面上,作为湿度折射率换能器,当环境湿度从20%RH增加至95%RH时,其RI差异为1.49至1.34。通过商业湿度计在我们的自制湿度室中研究了感测结构的相对湿度响应。通过监测反射的包层模式的强度,可以解调RH方差。实验结果表明,RH敏感性取决于RH值,最高可达1.2dB /%RH的敏感性可以在30-90%的RH范围内实现。还研究了快速和可逆的时间响应。这种探测型和可重复使用的光纤RH传感器是一种非常有希望的生物化学传感应用技术,例如呼气分析,化学反应监测。

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