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An efficient approach for calculating the reflection and transmission spectra of fiber Bragg gratings with acoustically induced microbending

机译:计算声诱发微弯曲的光纤布拉格光栅反射和透射光谱的有效方法

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摘要

A novel and efficient approach is proposed to calculate transmission and reflection spectra of propagating core mode and higher-order cladding modes when the fiber Bragg gratings (FBGs) are modulated by acoustically induced microbending. Based on a matrix form of first-order differential equations and its eigen-values/vectors using similarity transformation method, coupled-mode equations modeling acoustically induced microbending in FBG with a thin cladding can be transformed into a simple mathematical formulation. This method would be straightforward and thus beneficial to solve directly multimode coupled equations in comparison with a previous used fundamental matrix method and a Runge-Kutta algorithm. This simple model provides us a good view of co-directional and contra-directional couplings caused by acoustically induced microbending through FBGs.
机译:提出了一种新颖高效的方法,用于当通过声致微弯曲调制光纤布拉格光栅(FBG)时,计算传播芯模和高阶包层模的透射和反射谱。基于使用相似变换方法的一阶微分方程及其特征值/向量的矩阵形式,可以将建模有薄壁的FBG中声诱发微弯曲的耦合模式方程转换为简单的数学公式。与先前使用的基本矩阵方法和Runge-Kutta算法相比,该方法将很简单,因此有利于直接求解多模耦合方程。这个简单的模型为我们提供了由FBG的声学感应微弯曲引起的同向和反向耦合的良好视图。

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