• DocumentCode
    1504300
  • Title

    Interleaving two-dimensional lattices to create three-dimensional photonic bandgap structures

  • Author

    Reynolds, A.L. ; Arnold, J.M.

  • Author_Institution
    Dept. of Electron. & Electr. Eng., Glasgow Univ., UK
  • Volume
    145
  • Issue
    6
  • fYear
    1998
  • fDate
    12/1/1998 12:00:00 AM
  • Firstpage
    436
  • Lastpage
    440
  • Abstract
    A two-dimensional lattice consists of an inhomogeneous dielectric medium which has periodic variations of permittivity along two linear directions, and is uniform in the third dimension. The paper considers a class of three-dimensional photonic band gap materials formed by the interleaving of a pair of two-dimensional lattices whose uniform directions are mutually orthogonal, the so-called `woodpile´ geometry. It is shown by numerical calculations that the strong polarisation discrimination exhibited by the constituent two-dimensional sublattices in their respective stopbands leads to a completely three-dimensional photonic bandgap crystal in all polarisations when the two sublattices are interleaved. For a general class of such synthetic crystals having arbitrary two-dimensional distributions in the sublattices, many properties of the three-dimensional interleaved crystal can be predicted directly from a knowledge of the properties of the sublattices, thereby radically reducing the computational cost of their determination
  • Keywords
    light polarisation; permittivity; photonic band gap; inhomogeneous dielectric medium; interleaving; permittivity; stopbands; strong polarisation discrimination; synthetic crystals; three-dimensional photonic bandgap crystal; three-dimensional photonic bandgap structures; two-dimensional lattices; woodpile geometry;
  • fLanguage
    English
  • Journal_Title
    Optoelectronics, IEE Proceedings -
  • Publisher
    iet
  • ISSN
    1350-2433
  • Type

    jour

  • DOI
    10.1049/ip-opt:19982474
  • Filename
    762385