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Relative Humidity Sensor Based on No-Core Fiber Coated by Agarose-Gel Film

机译:基于无芯纤维的琼脂糖凝胶膜涂层相对湿度传感器

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摘要

A relative humidity (RH) sensor based on single-mode–no-core–single-mode fiber (SNCS) structure is proposed and experimentally demonstrated. The agarose gel is coated on the no-core fiber (NCF) as the cladding, and multimode interference (MMI) occurs in the SNCS structure. The transmission spectrum of the sensor is modulated at different ambient relative humidities due to the tunable refractive index property of the agarose gel film. The relative humidity can be measured by the wavelength shift and intensity variation of the dip in the transmission spectra. The humidity response of the sensors, coated with different concentrations and coating numbers of the agarose solution, were experimentally investigated. The wavelength and intensity sensitivity is obtained as −149 pm/%RH and −0.075 dB/%RH in the range of 30% RH to 75% RH, respectively. The rise and fall time is tested to be 4.8 s and 7.1 s, respectively. The proposed sensor has a great potential in real-time RH monitoring.
机译:提出并通过实验证明了基于单模无芯单模光纤(SNCS)结构的相对湿度(RH)传感器。琼脂糖凝胶作为包层涂覆在无芯光纤(NCF)上,并且SNCS结构中发生多模干扰(MMI)。由于琼脂糖凝胶膜的可调折射率特性,在不同的环境相对湿度下调制传感器的透射光谱。相对湿度可以通过波长变化和透射光谱中凹陷的强度变化来测量。实验研究了涂覆有不同浓度和涂覆次数的琼脂糖溶液的传感器的湿度响应。获得的波长和强度灵敏度分别为-149 pm /%RH和-0.075 dB /%RH,分别在30%RH至75%RH的范围内。测试的上升和下降时间分别为4.8 s和7.1 s。所提出的传感器在实时RH监测中具有很大的潜力。

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