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Photonic eigenmodes and light propagation in periodic structures of chiral nanoparticles

机译:手性纳米粒子周期性结构的光子本征模式和光传播

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摘要

We present a detailed analysis of the optical modes and light propagation in photonic crystals consisting of chiral spheres in a nonchiral isotropic medium, calculated by the full electrodynamic layer-multiple-scattering method. It is shown that resonant modes of the individual spheres give rise to narrow bands that hybridize with the extended bands of the appropriate symmetry associated with light propagation in an underlying effective chiral medium. The resulting photonic dispersion diagrams exhibit remarkable features, peculiar to a system that possesses time-reversal but not space-inversion symmetry, which are analyzed in terms of group theory. In particular, we reveal the occurrence of strong band bending away from the Bragg points with consequent negative-slope dispersion inside the first Brillouin zone, slow-photon bands, and frequency gaps. The calculated band structure is discussed in conjunction with relevant reflection diagrams, providing a consistent interpretation of the underlying physics.
机译:我们介绍了通过全电动力层-多次散射法计算的在非手性各向同性介质中由手性球组成的光子晶体中的光学模式和光传播的详细分析。结果表明,各个球体的共振模产生了窄带,这些带与适当对称性的扩展带杂交,该扩展带与在潜在有效手性介质中的光传播相关。所得的光子色散图显示出显着的特征,该特征是具有时间反转但不具有空间反转对称性的系统所特有的,将根据组理论对其进行分析。特别是,我们揭示了发生强烈的频带弯曲,使其远离布拉格点,从而在第一布里渊区,慢光子频带和频率间隙内产生负斜率弥散的现象。将结合相关的反射图讨论计算出的能带结构,从而对基础物理学提供了一致的解释。

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  • 来源
    《Physical review》 |2011年第24期|p.245126.1-245126.7|共7页
  • 作者单位

    University B.83f Athens, SectiB.83n B.83f SB.83lid State Physics, PanepistimiB.83upB.83lis, GR-157 84 Athens, Greece,Institute B.83f Materials Science, NCSR "DemB.83kritB.83s" GR-I53 10 Athens, Greece;

    University B.83f Athens, SectiB.83n B.83f SB.83lid State Physics, PanepistimiB.83upB.83lis, GR-157 84 Athens, Greece;

    Institute B.83f MicrB.83electrB.83nics,NCSR "DemB.83kritB.83s',' GR-153 10 Athens, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    photonic bandgap materials; wave propagation, transmission and absorption; optical activity;

    机译:光子带隙材料;波的传播;传输和吸收;光学活动;

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