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Photonic band gap materials [French]

机译:光子带隙材料[法语]

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Photonic band gap materials are periodic dielectric structures that control the propagation of electromagnetic waves. We describe the plane wave method, which allows to calculate the band structures of photonic crystals. By symmetry analysis and a perturbative approach, we predict the appearance of the low energy photonic band gaps of hexagonal structures. We propose new two-dimensional structures called graphite and boron nitride. Using a transfer matrix method, we calculate the transmission of the graphite structure and we show the crucial role of the coupling with external modes. We study the appearance of allowed modes in the photonic band gap by the introduction of localized defects in the periodicity. Finally, we discuss the properties of opals formed by self-organized silica microspheres, which are very promising for the fabrication of three-dimensional photonic crystals. [References: 68]
机译:光子带隙材料是控制电磁波传播的周期性介电结构。我们描述了平面波方法,该方法可以计算光子晶体的能带结构。通过对称分析和摄动方法,我们预测六角形结构的低能光子带隙的出现。我们提出了新的二维结构,称为石墨和氮化硼。使用转移矩阵方法,我们计算了石墨结构的透射率,并展示了与外部模式耦合的关键作用。我们通过引入周期性的局部缺陷来研究光子带隙中允许模式的出现。最后,我们讨论了由自组织二氧化硅微球形成的蛋白石的性质,这对于制造三维光子晶体非常有前途。 [参考:68]

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