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KRONIG-PENNEY MODEL FOR PERIODICALLY SEGMENTED WAVEGUIDES

机译:周期性分段波导的克朗尼-彭尼模型

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Physical insight into the propagation characteristics of periodically segmented waveguides can be obtained by viewing the guiding layer as a thin slab of an idealized infinite medium with periodic layers along the direction of propagation. One can analyze the properties of this infinite medium using a formal analogy with the Kronig-Penney model used to describe the propagation of electron wave functions in a periodic crystal potential. The model correctly gives the effective refractive index of the layer, gives insight into the electric field profiles at different points on the dispersion curve, and leads to a qualitative explanation of why the optical loss diminishes at both large and small duty cycles. (C) 1996 Optical Society of America [References: 11]
机译:通过将引导层视为理想化的无限介质的薄平板,沿着传播方向具有周期性层,可以获得对周期性分段波导的传播特性的物理洞察力。可以使用与Kronig-Penney模型的形式类似物来分析这种无限介质的特性,该模型用于描述电子波函数在周期性晶体势中的传播。该模型正确给出了该层的有效折射率,洞察了色散曲线上不同点处的电场分布,并给出了在大占空比和小占空比下光损耗为何减小的定性解释。 (C)1996年美国眼镜学会[参考文献:11]

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