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Novel Bending Loss Reduction Technique for the TM Mode in SOI-Based Waveguides

  • Claudia M. Serpa-Imbett
  • , Hugo E. Hernandez-Figueroa

    Research output: Contribution to scientific journalArticle in an indexed scientific journalpeer-review

    6 Scopus citations

    Abstract

    A new approach to reduce the bending loss of the fundamental quasi-transverse magnetic mode in optical waveguides is presented. A much lower bending loss is achieved by designing waveguides that use as substrate or cladding an anisotropic metamaterial made of multilayers of thin films of germanium and porous silica instead of a conventional silica substrate or cladding. We numerically demonstrate a reduction in the bending loss of up to ∼3 dB/90° for a silicon-on-insulator (SOI) waveguide of the standard core size (500 × 220 nm), as well as, up to ∼ 10 dB/90° for a sub-wavelength SOI waveguide of core size (372 × 186 nm), even considering the high absorption of the germanium layers in the cladding, both designed to operate at 1550 nm.

    Original languageEnglish
    Article number7377019
    Pages (from-to)872-875
    Number of pages4
    JournalIEEE Photonics Technology Letters
    Volume28
    Issue number8
    DOIs
    StatePublished - 15 Apr 2016

    Bibliographical note

    Publisher Copyright:
    © 2016 IEEE.

    Keywords

    • Anisotropic media
    • Integrated Optics
    • Metamaterial
    • Optical Bent Waveguides
    • Silicon On Insulator (SOI)

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