• DocumentCode
    1494074
  • Title

    Novel Silica-Based Waveguide-Type Polarization Beam Splitters Using Trenches Filled With Low-Refractive-Index Material

  • Author

    Ito, Jiro ; Tsuda, Hiroyuki

  • Author_Institution
    Dept. of Sci. & Technol., Keio Univ., Yokohama, Japan
  • Volume
    27
  • Issue
    24
  • fYear
    2009
  • Firstpage
    5668
  • Lastpage
    5674
  • Abstract
    We have proposed and fabricated two kinds of planar-lightwave-circuits-type polarization beam splitters (PBSs) using trenches filled with low-refractive-index material: a narrowband-type and a wideband-type. Both PBSs consisted of two 3-dB couplers and two waveguide arms with trenches of different lengths. A narrowband-type PBS used silica-based waveguides on silica substrates. On the other hand, a wideband-type PBS used silica-based waveguides on silicon. The local lateral refractive index difference (??) was increased by introducing a pair of trenches. Due to the local lateral enhanced optical confinement structure, the propagation constants of waveguides constructed using trenches filled with a low-refractive-index material depend strongly on the polarization. A narrowband-type PBS, which had the same arm lengths can have a high polarization extinction ratio, although the working bandwidth is restricted. However, a wideband-type PBS, which had the different arm lengths can function over a broad wavelength range, provided that the maximum polarization extinction ratio is acceptable. We optimized the structures of both types of PBS by carrying out simulations. In these simulations, the narrowband-type PBS exhibited a maximum polarization extinction ratio of -34.5 dB for the through-path at 1555 nm, -42.7 dB for the cross-path at 1545 nm, whereas the wideband-type PBS exhibited a -10 dB polarization extinction ratio bandwidth of 105 nm. Our fabricated narrowband-type PBS exhibited a -10 dB polarization extinction ratio bandwidth of 45 nm for both the through-path and the cross-path. At this bandwidth, the insertion loss was less than 9.0 dB. The maximum polarization extinction ratio was -28.9 dB for the through-path at 1570 nm, and -27.5 dB for the cross-path at 1535 nm.
  • Keywords
    light polarisation; optical beam splitters; optical couplers; optical fabrication; optical losses; optical planar waveguides; optical polarisers; refractive index; silicon compounds; SiO2; insertion loss; local lateral refractive index difference; low-refractive-index material; maximum polarization extinction ratio; narrowband-type PBS; optical confinement structure; optical couplers; planar-lightwave-circuits-type polarization beam splitters; polarization beam splitter fabrication; propagation constants; silica substrates; silica-based waveguide-type polarization beam splitters; trenches; wavelength 1535 nm; wavelength 1545 nm; wavelength 1555 nm; wavelength 1570 nm; wavelength 1605 nm; wideband-type PBS; Integrated optics; optical beam splitting; optical planar waveguides; optical polarization;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2009.2033616
  • Filename
    5280363