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Curvature and Temperature Discrimination Using Multimode Interference Fiber Optic Structures—A Proof of Concept

机译:使用多模干涉光纤结构的曲率和温度判别—概念验证

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摘要

Singlemode-multimode-singlemode fiber structures (SMS) based on distinct sections of a pure silica multimode fiber (coreless-MMF) with diameters of 125 and 55 $mu$m, were reported for the measurement of curvature and temperature. The sensing concept relies on the multimode interference that occurs in the coreless-MMF section and, in accordance with the length of the MMF section used, two fiber devices were developed: one based on a bandpass filter (self-image effect) and the other on a band-rejection filter. Maximum sensitivities of 64.7 nm${cdot}$m and 13.08 pm/$^{circ}$C could be attained, for curvature and temperature, respectively, using the band-rejection filter with 55 $mu$ m-MMF diameter. A proof of concept was also explored for the simultaneous measurement of curvature and temperature by means of the matrix method.
机译:据报道,基于纯石英多模光纤(无芯MMF)的不同截面的单模-多模-单模光纤结构(SMS),其直径分别为125和55μm,用于测量曲率和温度。传感概念依赖于无芯MMF部分中发生的多模干扰,根据使用的MMF部分的长度,开发了两种光纤设备:一种基于带通滤波器(自镜像效应),另一种基于在带阻滤波器上。使用具有55μmm-MMF直径的带阻滤波器,对于曲率和温度,最大灵敏度分别可以达到64.7 nm $ m和13.08 pm / $ circ $ C。还探索了通过矩阵方法同时测量曲率和温度的概念证明。

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