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Full-wave optimization of three-dimensional photonic-crystal structures involving dielectric rods

机译:涉及介质棒的三维光子晶体结构的全波优化

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We present rigorous optimization and design of three-dimensional photonic-crystal (PhC) structures involving finite dielectric rods. These types of PhCs are known to be useful in diverse applications, such as imaging, power focusing, filtering, and pattern shaping at optical frequencies. Without resorting to their two-dimensional models, which are commonly used in the literature, we consider PhCs as three-dimensional structures, whose electromagnetic characteristics are optimized via genetic algorithms integrated with an efficient and accurate solver based on the multilevel fast multipole algorithm. In addition to the designs of PhCs that can provide desired output patterns, we present sensitivity tests to understand the critical geometric parameters, as well as to test and evaluate the tolerance of the proposed designs to possible fabrication errors. (C) 2018 Optical Society of America
机译:我们呈现了涉及有限介电棒的三维光子晶体(PHC)结构的严格优化和设计。 已知这些类型的PHC在不同的应用中是有用的,例如在光学频率下成像,功率聚焦,滤波和图案整形。 在不诉诸于文献中通常使用的二维模型,我们将PHCS视为三维结构,其电磁特性通过基于多级快速多极算法的高效和准确的求解器集成的遗传算法进行了优化。 除了能够提供所需输出模式的PHC的设计外,我们还提供了敏感性测试,以了解临界几何参数,以及测试和评估所提出的设计对可能的制造误差的公差。 (c)2018年光学学会

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