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Optical fiber waist-enlarged bitaper-based Michelson interferometric humidity sensor

机译:基于光纤腰部增大的比特尖的迈克尔逊干涉式湿度传感器

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An optical fiber waist-enlarged bitaper-based Michelson interferometric sensor is proposed and experimentally demonstrated for humidity measurement. The waist enlarged bitaper is created for light coupling between core mode and cladding modes propagating in the fiber interferometer. A chitason layer is plated onto the surface of the interferometer to act as a humidity-to-refractive index (RI) transducer and thus humidity measurement can be realized by monitoring the wavelength shifts of its interferogram induced by RI variations. The influence of the coating thickness and concentration of chitason on relative humidity (RH) measurement is experimentally studied. The coating sensor demonstrates an optimal humidity-sensing ability, with a humidity sensitivity and fast time-response of ~26 pm/%RH and ~5 s respectively, when it is 3-dip coated in chitason solutions of the concentration of 1 wt.%. The proposed humidity sensor is compact, cost-effective and of easy-operation, therefore it has potentials in many practical applications.
机译:提出了一种基于光纤腰部扩大的比塔普式迈克尔逊干涉传感器,并通过实验证明了该传感器可用于湿度测量。腰部扩大的bitaper用于在光纤干涉仪中传播的纤芯模式和包层模式之间进行光耦合。将Chitason层镀在干涉仪的表面上以充当湿度折光率(RI)传感器,因此可以通过监视由RI变化引起的干涉图的波长偏移来实现湿度测量。实验研究了涂层厚度和壳聚糖浓度对相对湿度(RH)测量的影响。当将其浸入浓度为1 wt。%的chitason溶液中进行3浸涂时,该涂层传感器表现出最佳的湿度感应能力,其湿度敏感性和快速时间响应分别为〜26 pm /%RH和〜5 s。 %。所提出的湿度传感器是紧凑的,成本有效的并且易于操作,因此在许多实际应用中具有潜力。

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