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Method of adiabatic modes in studying problems of smoothly irregular open waveguide structures

机译:研究光滑不规则开放波导结构问题的绝热模式方法

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摘要

Basic steps in developing an original method of adiabatic modes that makes it possible to solve the direct and inverse problems of simulating and designing three-dimensional multilayered smoothly irregular open waveguide structures are described. A new element in the method is that an approximate solution of Maxwell's equations is made to obey "inclined" boundary conditions at the interfaces between themedia being considered. These boundary conditions take into account the obliqueness of planes tangent to nonplanar boundaries between the media and lead to new equations for coupled vector quasiwaveguide hybrid adiabatic modes. Solutions of these equations describe the phenomenon of "entanglement" of two linear polarizations of an irregular multilayered waveguide, the appearance of a new mode in an entangled state, and the effect of rotation of the polarization plane of quasiwaveguide modes. The efficiency of the method is demonstrated by considering the example of numerically simulating a thin-film generalized waveguide Lüneburg lens.
机译:描述了开发绝热模式的原始方法的基本步骤,该基本方法可以解决模拟和设计三维多层平滑不规则开放波导结构的正反问题。该方法中的一个新元素是使麦克斯韦方程组的近似解服从在所考虑的介质之间的界面处的“倾斜”边界条件。这些边界条件考虑了与介质之间非平面边界相切的平面的倾斜度,并导致了耦合矢量准波导混合绝热模式的新方程式。这些方程的解描述了不规则多层波导的两个线性极化的“纠缠”现象,处于纠缠态的新模式的出现以及准波导模式的极化平面的旋转效应。通过考虑对薄膜广义波导吕讷堡透镜进行数值模拟的示例,证明了该方法的有效性。

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