构造光滑不规则集成光波导绝热导模模型的渐近方法

A. Sevastianov
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引用次数: 4

摘要

本文考虑了一类光滑不规则的集成光学多层波导,其特性决定了单色偏振光的导波特性。提出了一种描述这种电磁辐射的渐近方法,其中Maxwells方程的解用四个常微分方程组和六个电磁场分量的两个代数方程组在零近似下的解表示。对于给定模式,绝热导模的相位前沿的梯度满足关于波导的有效折射率的eikonal方程。波导的多层结构允许将模型简化为线性代数方程的齐次系统的又一个阶段,该方程的非平凡可解性条件指定了辐射相位前沿的梯度与薄的均匀层之间的界面梯度之间的关系。在工作的最后部分,描述绝热导模的特征值和特征向量问题(微分和代数)被公式化。给出了描述绝热导模单模传播问题的公式,强调了所描述的Maxwells方程近似解的绝热性质。
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Asymptotic method for constructing a model of adiabatic guided modes of smoothly irregular integrated optical waveguides
The paper considers a class of smoothly irregular integrated optical multilayer waveguides, whose properties determine the characteristic features of guided propagation of monochromatic polarized light. An asymptotic approach to the description of such electromagnetic radiation is proposed, in which the solutions of Maxwells equations are expressed in terms of the solutions of a system of four ordinary differential equations and two algebraic equations for six components of the electromagnetic field in the zero approximation. The gradient of the phase front of the adiabatic guided mode satisfies the eikonal equation with respect to the effective refractive index of the waveguide for the given mode.The multilayer structure of waveguides allows one more stage of reducing the model to a homogeneous system of linear algebraic equations, the nontrivial solvability condition of which specifies the relationship between the gradient of the radiation phase front and the gradients of interfaces between thin homogeneous layers.In the final part of the work, eigenvalue and eigenvector problems (differential and algebraic), describing adiabatic guided modes are formulated. The formulation of the problem of describing the single-mode propagation of adiabatic guided modes is also given, emphasizing the adiabatic nature of the described approximate solution of Maxwells equations.
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来源期刊
CiteScore
0.60
自引率
0.00%
发文量
20
审稿时长
10 weeks
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