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首页> 外文期刊>Journal of Lightwave Technology >An approximate effective index model for efficient analysis and control of beam propagation effects in photonic Crystals
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An approximate effective index model for efficient analysis and control of beam propagation effects in photonic Crystals

机译:用于有效分析和控制光子晶体中光束传播效应的近似有效折射率模型

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Propagation of optical beams through a photonic crystal (PC) is analyzed and modeled. It is shown that the propagation effects for beams with slow spatial variations can be effectively modeled by diffraction behavior obtained directly from band structure. In particular, we present here an approximate model based on defining an effective index for the PC that can be used to analyze the propagation of optical beams inside the PC using the well-known analytic formulas for wave propagation in bulk media. The model presented here allows for considerable reduction in computation time and complexity. It also allows us to obtain more intuitive and design-oriented information about beam propagation effects inside PCs. We apply this model to several practical cases and show that its results agree very well with direct (time-consuming) numerical simulations.
机译:通过光子晶体(PC)的光束传播进行了分析和建模。结果表明,空间变化慢的光束的传播效果可以通过直接从能带结构获得的衍射行为有效地建模。尤其是,我们在此基于定义PC的有效指标的近似模型,可以使用众所周知的解析公式在大容量介质中传播波,来分析光束在PC内部的传播。此处介绍的模型可大大减少计算时间和复杂性。它还使我们可以获得有关PC内部光束传播效果的更直观和面向设计的信息。我们将此模型应用于几个实际案例,并表明其结果与直接(费时)数值模拟非常吻合。

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