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Differential method applied for photonic crystals

机译:微分方法应用于光子晶体

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摘要

The classic differential method is applied for modeling the diffraction of light from two-dimensional photonic crystals that consist of dielectric cylindrical objects. Special attention is paid to mutual interpenetration of consecutive layers. Two algorithms for dealing with a stack of repetitive layers are discussed, namely, the eigenvalue technique and the S-matrix algorithm. Their advantages and limitations are analyzed, and times required for their implementation are compared.
机译:经典的微分方法用于模拟由介电圆柱体组成的二维光子晶体的光衍射。要特别注意连续层的相互渗透。讨论了用于处理重复层堆栈的两种算法,即特征值技术和S矩阵算法。分析了它们的优点和局限性,并比较了其实现所需的时间。

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