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General Analytical Coupled-mode Solution of Multiwaveguide Systems

机译:多波导系统的一般解析耦合模式解决方案

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Standard Coupled-Mode Theory (Standard CMT) is a well-known approach for analysis of coupling and propagation of guided modes in multiwaveguide systems. In order to analyze propagation of EM fields these systems, Standard CMT solves 1st order differential matrix equation (Standard CMT equation). Analytical solution for this equation currently exists only for the multiwaveguide systems with dielectric function, homogeneous along the optical axis (z-axis). Coupled-mode analysis of the devices, whose dielectric function varies along the optical axis (e.g. photonic components with integrated optical gratings) till now, is only available with numerical techniques. In this work, we propose the general Analytical solution for Standard CMT equation, including the case of dielectric function, inhomogeneous in the z-direction. This solution represents an effective analytical tool for fast and accurate analysis, design and optimization of a variety of photonic components, whose principles of operation are based on the variation of their dielectric function along the optical axis.
机译:标准耦合模式理论(Standard CMT)是一种用于分析多波导系统中的引导模式的耦合和传播的众所周知的方法。为了分析这些系统中电磁场的传播,标准CMT求解一阶微分矩阵方程(标准CMT方程)。当前仅对该具有介电功能且沿光轴(z轴)均匀的多波导系统存在此方程的解析解。迄今为止,其介电功能沿光轴变化的设备的耦合模式分析(例如,具有集成光栅的光子组件)仅适用于数值技术。在这项工作中,我们提出了标准CMT方程的一般解析解,包括介电函数的情况,在z方向上是不均匀的。该解决方案代表了一种有效的分析工具,可用于快速,准确地分析,设计和优化各种光子组件,其工作原理基于其介电函数沿光轴的变化。

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