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Robust topology optimization of photonic crystal waveguides with tailored dispersion properties

机译:具有定制色散特性的光子晶体波导的稳健拓扑优化

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摘要

A robust topology optimization method is formulated to tailor dispersion properties of photonic crystal waveguides, with consideration of manufacturing uncertainties. Slightly dilated and eroded realizations are considered as well as the real structure, and by worst-case optimization, we also ensure a satisfactory performance in the case of an under- or overetching scenario in the manufacturing process. Two photonic crystal waveguides facilitating slow light with group indexes of ng = 25 and ng = 100 and bandwidths of Δω/ω = 2:3% and 0.3%, respectively, are obtained through the proposed robust design procedure. In addition, a novel waveguide design with two different constant group index waveguide regions is demonstrated. The numerical examples illustrate the efficiency of the robust optimization formulation and indicate that the topology optimization procedure can provide a useful tool for designing waveguides that are robust to manufacturing uncertainties such as under or overetching. © 2011 Optical Society of America.
机译:考虑到制造的不确定性,制定了一种鲁棒的拓扑优化方法来调整光子晶体波导的色散特性。略微扩张和侵蚀的实现以及实际结构都将被考虑在内,并且通过最坏情况的优化,即使在制造过程中出现蚀刻不足或蚀刻过度的情况下,我们也可以确保令人满意的性能。通过提出的鲁棒性设计程序,获得了两个光子晶体波导,它们分别促进了组索引为ng = 25和ng = 100且带宽分别为Δω/ω= 2:3%和0.3%的慢光。另外,展示了具有两个不同的恒定群指数波导区域的新颖的波导设计。数值示例说明了鲁棒性优化公式的效率,并表明拓扑优化过程可以为设计对制造不确定性(例如欠蚀刻或过蚀刻)具有鲁棒性的波导提供有用的工具。 ©2011美国眼镜学会。

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