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Studies on functional photonic crystal devices utilizing anisotropic medium properties by condensed node spatial network method

机译:冷凝节点空间网络方法利用各向异性介质特性的功能光子晶体装置的研究

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Photonic crystal (PC) devices have been drawing attention as the integrated optical circuits head toward the next generation. However, the fabrication of those devices is now very difficult because of their fine and complicated structure. In this paper, new functional photonic crystal devices utilizing uniaxial and gyro anisotropic medium properties are proposed and evaluated by numerical electromagnetic fields simulation based on the condensed node spatial network method (CN-SNM) for the vector potential. As the results, the improvement in sharp bend property of 2D air-hole type PC waveguide by uni-axial anisotropic substrate and the new PC switching element by gyro anisotropy are discussed.
机译:光子晶体(PC)器件一直在介绍作为集成光学电路头朝下一代的关注。然而,由于它们的细腻和复杂的结构,这些装置的制造现在非常困难。本文通过基于用于矢量电位的冷凝节点空间网络方法(CN-SNM)的数值电磁场模拟,提出和评估了利用单轴和陀螺各向异性介质特性的新功能光子晶体装置。结果,讨论了由Uni轴向各向异性基板的2D气孔型PC波导的急剧弯曲性能的改善和通过陀螺各向异性的新的PC开关元件。

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