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Coupled mode analysis of the photonic crystal waveguide

机译:光子晶体波导的耦合模式分析

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摘要

Starting from an intuitive picture of photons bouncing back and forth within a slab of a uniform medium surrounded by photonic crystal (PC) layers, we develop a coupled mode formalism for the analysis of a PC waveguide. The modal solution in the core is given by counter-propagating waves while the cladding field is derived from a modified coupled mode formalism. This coupled mode approach is used to analyze the dispersion and loss of the PC waveguide. Although coupled mode theory is usually applied to structures with a small index contrast perturbation, we find that our coupled mode formalism with an empirical coupling constant can be used to model a large index contrast PC waveguide. A single constant is used to analyze the dispersion and the loss of a two dimensional PC waveguide, a GaAs substrate with air holes. Our results are corroborated with a two dimensional finite-difference time-domain (FDTD) simulation and we find good quantitative agreement between the coupled mode theory and the FDTD analysis.
机译:从在由光子晶体(PC)层围绕的均匀介质的平板中来回弹跳的光子的直观图片开始,我们开发了一种耦合模式形式,用于分析PC波导。核心中的模态解由对向传播波给出,而包层场则来自修改后的耦合模态形式。这种耦合模式方法用于分析PC波导的色散和损耗。尽管耦合模式理论通常用于具有较小折射率对比扰动的结构,但我们发现具有经验耦合常数的耦合模式形式主义可用于建模大折射率对比PC波导。单个常数用于分析二维PC波导,带气孔的GaAs衬底的色散和损耗。二维有限差分时域(FDTD)模拟证实了我们的结果,并且在耦合模式理论与FDTD分析之间找到了良好的定量一致性。

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