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Modeling optical microfiber loops for seawater sensing

机译:为海水感应建模光学超细纤维环

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摘要

Based on resonant and waveguiding properties of optical microfiber loops, we theoretically investigated silica microfiber loop resonators (MLRs) for refractive index (RI) and salinity sensing of seawater. Dependences of sensitivity and detection limit on probing wavelength, fiber diameter, and ring diameter are calculated with typical parameters of seawater. Our results show that the sensitivity of MLRs increases with the increasing wavelength and the decreasing diameter of the microfiber. Bending loss and absorption loss are both important factors to determine the detection limit. By optimizing the parameters of the sensing system, RI sensitivity and salinity detection limit can reach 10~(-6) RI units (RIU) and 10~(-2)(per thousand) (10 ppm), respectively. The model presented here may be helpful for developing microscale fiber sensors for seawater detection with high sensitivity, low detection limit, and miniaturized sizes.
机译:基于光学微纤维环的谐振和波导特性,我们从理论上研究了二氧化硅微纤维环谐振器(MLR)的折射率(RI)和海水盐度感测。使用海水的典型参数计算灵敏度和检测极限对探测波长,纤维直径和环直径的依赖性。我们的结果表明,MLR的灵敏度随着波长的增加和超细纤维直径的减小而增加。弯曲损耗和吸收损耗都是确定检测极限的重要因素。通过优化传感系统的参数,RI灵敏度和盐度检测极限分别可以达到10〜(-6)RI单位(RIU)和10〜(-2)(千分之一)(10 ppm)。此处介绍的模型可能有助于开发具有高灵敏度,低检测限和小型化的用于海水检测的微型光纤传感器。

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