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Ultrahigh-sensitivity temperature fiber sensor based on multimode interference

机译:基于多模干涉的超高灵敏度温度光纤传感器

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The proposed sensing device relies on the self-imaging effect that occurs in a pure silica multimode fiber (coreless MMF) section of a single-mode-multimode-single-mode (SMS)-based fiber structure. The influence of the coreless-MMF diameter on the external refractive index (RI) variation permitted the sensing head with the lowest MMF diameter (i.e., 55 (mu)m) to exhibit the maximum sensitivity (2800 nm/RIU). This approach also implied an ultrahigh sensitivity of this fiber device to temperature variations in the liquid RI of 1.43: a maximum sensitivity of -1880 pm/(deg C) was indeed attained. Therefore, the results produced were over 100-fold those of the typical value of approximately 13 pm/(deg C) achieved in air using a similar device. Numerical analysis of an evanescent wave absorption sensor was performed, in order to extend the range of liquids with a detectable RI to above 1.43. The suggested model is an SMS fiber device where a polymer coating, with an RI as low as 1.3, is deposited over the coreless MMF; numerical results are presented pertaining to several polymer thicknesses in terms of external RI variation.
机译:提出的传感设备依赖于基于单模多模单模(SMS)的光纤结构的纯二氧化硅多模光纤(无芯MMF)部分中发生的自成像效应。无芯MMF直径对外部折射率(RI)变化的影响使得具有最低MMF直径(即55μm)的感测头表现出最大灵敏度(2800nm / RIU)。该方法还暗示该光纤设备对液体RI中的温度变化具有1.43的超高灵敏度:确实获得了-1880 pm /(℃)的最大灵敏度。因此,所产生的结果是使用类似设备在空气中获得的典型值(约13 pm /(℃)的结果)的100倍以上。进行了van逝波吸收传感器的数值分析,以将可检测到的RI的液体范围扩展到1.43以上。建议的模型是一种SMS光纤设备,其中在低芯MMF上沉积RI低至1.3的聚合物涂层。根据外部RI变化,给出了与几种聚合物厚度有关的数值结果。

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