• DocumentCode
    1401665
  • Title

    Ultracompact Multimode Interference Coupler Designed by Parallel Particle Swarm Optimization With Parallel Finite-Difference Time-Domain

  • Author

    Wang, Qian ; Ho, S.T.

  • Author_Institution
    Data Storage Inst., Agency for Sci., Technol. & Res., Singapore, Singapore
  • Volume
    28
  • Issue
    9
  • fYear
    2010
  • fDate
    5/1/2010 12:00:00 AM
  • Firstpage
    1298
  • Lastpage
    1304
  • Abstract
    An ultra-compact multimode interference (MMI) coupler with a length ~10 ??m for dense photonic integration is designed by parallel particle swarm optimization (PSO) with parallel finite-difference time-domain (FDTD). The MMI coupler uses a strongly-guiding deep-etched InP platform and the modal analysis of this strongly-guiding deep-etched InP waveguide gives the cross section of the single-mode nanophotonic waveguide, the geometry of the multimode interference region, and the etched-depth requirement. An efficient global optimizer combining parallel PSO algorithm and parallel FDTD is developed, which speedups the optimization and enables automatic nanophotonic design. Two 2 ?? 2 multimode interference couplers with a respective coupling ratio of 50%:50% and 90%:10% are designed as numerical examples using the global optimizer developed and the optimization result shows a ultra-compact multimode interference coupler with a length of ~10 ??m can be achieved with a low excess loss, which is numerically verified by a parallel three-dimensional FDTD.
  • Keywords
    III-V semiconductors; etching; finite difference time-domain analysis; indium compounds; integrated optics; light interference; modal analysis; nanophotonics; optical couplers; particle swarm optimisation; InP; coupling ratio; dense photonic integration; modal analysis; multimode interference coupler; parallel finite-difference time-domain; parallel particle swarm optimization; single-mode nanophotonic waveguide; Finite-difference-time-domain; multimode interference coupler; parallelization; particle swarm optimization;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2010.2040582
  • Filename
    5404802