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Green's Function Analysis of Electromagnetic Wave Propagation in Photonic Crystal Devices Using Complex Images Technique

机译:使用复杂图像技术的光子晶体器件中电磁波传播的格林函数分析

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摘要

An integral equation method employing complex images Green's functions is developed for analyzing different devices fabricated in 2-D dielectric photonic crystals. The integral equation is written in terms of the unknown equivalent current sources flowing on the surfaces of the periodic 2-D cylinders. The method of moments is then employed to solve for the unknown current distributions. The required Green's function of the problem is represented in terms of a finite summation of complex images instead of the conventional slowly converging infinite series. It is shown that when the field-point is far from the periodic sources, it is just sufficient to consider the contribution of the propagating poles in the structure. This will result in a summation of plane waves that has an even smaller size compared with the conventional complex images Green's function. This will enable us to analyze the dielectric periodic structures efficiently and accurately. The method is applied to a number of waveguide structures and its results are compared with the existing literature.
机译:开发了一种使用复杂图像格林函数的积分方程方法,用于分析以二维电介质光子晶体制造的不同器件。积分方程是根据在周期性二维圆柱体表面上流动的未知等效电流源来写的。然后采用矩量法求解未知的电流分布。问题的所需格林函数用复杂图像的有限求和来表示,而不是用常规的缓慢收敛的无穷级数来表示。结果表明,当场点远离周期源时,考虑传播极在结构中的贡献就足够了。与传统的复杂图像格林函数相比,这将导致平面波的总和具有更小的尺寸。这将使我们能够高效,准确地分析介电周期性结构。将该方法应用于许多波导结构,并将其结果与现有文献进行了比较。

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