首页> 外文会议>Conference on optical technologies for telecommunications >Quasi-interferometric scheme improved by fiber Bragg grating for detection of outer mechanical stress influence on distributed sensor being silica multimode optical fiber operating in a few-mode regime
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Quasi-interferometric scheme improved by fiber Bragg grating for detection of outer mechanical stress influence on distributed sensor being silica multimode optical fiber operating in a few-mode regime

机译:光纤布拉格光栅改进了准干涉法,以检测外部机械应力对分布式传感器的影响,该传感器是在多模态下工作的二氧化硅多模光纤

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This work presents results of experimental approbation of modified fiber optic stress sensor based on a few-mode effects occurring during laser-excited optical signal propagation over silica multimode optical fiber (MMF). Modification is concerned with adding of quasi-interferometric scheme realized by two multimode Y-couplers with equalized arm lengths improved by fiber Bragg grating (FBG) and special offset launching conditions providing laser-based excitation of higher-order modes. We tested FBGs written on graded-index MMFs 50/125 with Bragg wavelength 1550 nm connected to different parts of proposed scheme. Researches are focused on comparing analysis of both spectral and pulse responses under changing of selected mode mixing and power diffusion processes due to stress local and distributed action to sensor fiber depending on scheme configuration. Here we considered FBGs not only as particular wavelength reflector during spectral response measurement but also as local periodic microstructure defect strongly effecting few-mode signal components mixing process that provides pulse response variation. Some results of spectral and pulse response measurements produced for different scheme configuration and their comparison analysis are represented.
机译:这项工作提出了基于在石英多模光纤(MMF)上的激光激发光信号传播过程中发生的几种模式效应而对改进的光纤应力传感器进行实验验证的结果。修改涉及添加准干涉仪方案,该方案由两个多模Y型耦合器实现,它们的臂长相等,并通过光纤布拉格光栅(FBG)进行了改进,而特殊的偏移发射条件则提供了基于激光的高阶模激发。我们测试了在渐变折射率MMF 50/125上编写的FBG,它们的布拉格波长为1550 nm,并连接到建议方案的不同部分。研究重点在于比较由于模式局部应力和对传感器光纤的分布作用而导致的选定模式混合和功率扩散过程的变化下频谱响应和脉冲响应的分析。在这里,我们不仅将FBG视为光谱响应测量期间的特定波长反射器,而且还将其视为局部周期性微结构缺陷,强烈影响提供脉冲响应变化的少数模式信号分量混合过程。给出了针对不同方案配置产生的频谱和脉冲响应测量结果以及它们的比较分析的一些结果。

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