用于任意光束分析的平行波导耦合模理论的重新表述

Nitzan Shitrit, V. Shteeman, A. Hardy
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引用次数: 2

摘要

标准耦合模理论(Standard coupled mode Theory,简称Standard CMT)是为分析耦合平行波导阵列中的导模而发展起来的,现已扩展到包括任意光束的分析。这种扩展绕过了迄今为止存在的耦合模式形式的一些特征限制,从而为各种波导器件中光束的快速准确计算提供了有效的工具,与平行波导(包括但不限于现代光子微器件)的模型相匹配。AB-CMT结合了分析能力和高计算精度与数值稳定的算法和低时间和资源消耗。我们的计算表明,AB-CMT获得的结果与以成熟的波束传播方法(BPM)作为基准得到的结果非常吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reformulation of Coupled-Mode Theory of Parallel Waveguides for Analysis of Arbitrary Beams
Standard Coupled-Mode Theory (Standard CMT), developed for analysis of guided modes in arrays of coupled parallel waveguides, was extended to include analysis of arbitrary optical beams (AB-CMT). This extension bypasses some characteristic limitations of the coupled-mode formalism, existed so far, and thus offers an effective tool for fast and accurate computations of optical beams in the variety of waveguiding devices, matching the model of parallel waveguides (including, but not limited by modern photonic micro-devices). AB-CMT combines analytical capabilities and high computational accuracy with numerically stable algorithms and low time- and resource consumption. Our computations show the close agreement between the results, acquired with AB-CMT, and those received with the well-established Beam Propagation Method (BPM), served as the benchmark.
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