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Creation of partial band gaps in anisotropic photonic-band-gap structures

机译:在各向异性光子带隙结构中产生部分带隙

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摘要

The photonic-band-gap (PBG) structure composed of an anisotropic-dielectric sphere in uniform dielectric medium is studied by solving Maxwell’s equations using the plane-wave expansion method. In particular, for a uniaxial material with large principal refractive indices and sufficient anisotropy between them, the photonic band structures possess a full band gap in the whole Brillouin zone for a diamond lattice. Furthermore, in the 1/3 partial Brillouin zone where the Bloch wave vector has a dominant component along the extraordinary axis of uniaxial sphere, the photonic band structures are found to exhibit full band gaps for all the other lattices such as face-centered-cubic, body-centered-cubic, and simple-cubic lattices, although a complete band gap does not open in the whole Brillouin zone. The partial band gaps persist at a very low filling fraction of uniaxial sphere. This phenomenon is attributed to the breakdown of the photonic band degeneracy at high-symmetry points of the Brillouin zone by the anisotropy of material dielectricity. The combination of such an anisotropic PBG structure with the self-arrangement technique of colloidal crystal may provide a possible way to fabricate the three-dimensional photonic crystal in visible and infrared regimes. The application of a strong electric field may bring into alignment the extraordinary axis of uniaxial sphere as this configuration of spheres is most favorable thermodynamically.
机译:通过使用平面波展开法求解麦克斯韦方程,研究了在均匀介电介质中由各向异性介电球构成的光子带隙(PBG)结构。特别地,对于具有大的主折射率并且它们之间具有足够的各向异性的单轴材料,光子带结构在整个布里渊区中具有用于金刚石晶格的全带隙。此外,在布洛赫波矢量沿着单轴球面的非凡轴具有主要成分的1/3部分布里渊区中,发现光子能带结构对所有其他晶格(如面心立方)显示出全带隙,体心立方和简单立方晶格,尽管在整个布里渊区没有完整的带隙。在单轴球的填充率非常低的情况下,部分带隙仍然存在。该现象归因于由于材料介电常数的各向异性而在布里渊区的高对称点处的光子带简并性的破坏。这种各向异性的PBG结构与胶体晶体的自排列技术的结合可以提供一种在可见和红外条件下制造三维光子晶体的可能方法。强电场的施加可能使单轴球面的非寻常轴对准,因为这种球面的结构在热力学上是最有利的。

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  • 作者

    Wang J; Li ZY; Gu BY;

  • 作者单位
  • 年度 1998
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  • 原文格式 PDF
  • 正文语种 eng
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