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Analytical approximation for photonic array modes in two-dimensional photonic crystal lattices

机译:二维光子晶体晶格中光子阵列模式的解析近似

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We presented here a comprehensive analytical approximation, describing array modes (both the modal fields and their associated propagation constants) in 2D photonic lattices (i.e., arrays of identical coupled waveguides/lasers). Our approximation is a vectorial approach, accounting for the TE and TM polarizations. It is applicable to both the low-contrast and high-contrast photonic devices. The model of standing waves of a membrane was used for analytical evaluation of envelopes of the array modes and the total modal fields. Combination of this model with the coupled-mode formalism for 2D infinite photonic lattices allowed for evaluation of propagation constants of the array modes. Both the computations required only a few seconds. Still, the results, acquired with the analytical approximation, are in close agreement with those acquired with well-established approaches. Moreover, for the first time, analytical expressions for the modal fields and propagation constants become available. (C) 2016 Optical Society of America
机译:我们在这里提出了一种全面的分析近似方法,描述了二维光子晶格中的阵列模式(模态场及其相关的传播常数)(即,相同耦合的波导/激光的阵列)。我们的近似是一种矢量方法,考虑了TE和TM极化。它适用于低对比度和高对比度的光子设备。膜的驻波模型用于阵列模式和总模式场的包络线的分析评估。该模型与二维无限光子晶格的耦合模态形式相结合,可以评估阵列模态的传播常数。两种计算仅需几秒钟。尽管如此,通过分析逼近获得的结果仍与通过成熟方法获得的结果非常一致。此外,模态场和传播常数的解析表达式首次可用。 (C)2016美国眼镜学会

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