• DocumentCode
    1301493
  • Title

    All-Optical Switches Based on Multiple Cascaded Resonators With Reduced Switching Intensity-Response Time Products

  • Author

    Ngo, Quang Minh ; Kim, Sangin ; Lee, Jaejin ; Lim, Hanjo

  • Author_Institution
    Vietnam Acad. of Sci. & Technol., Hanoi, Vietnam
  • Volume
    30
  • Issue
    22
  • fYear
    2012
  • Firstpage
    3525
  • Lastpage
    3531
  • Abstract
    The general nonlinear behavior of multiple cascaded resonators is analyzed by using the coupled-mode theory in time and then compared to a single resonator from the viewpoint of optical bistable operation. Our analysis reveals that from the perspective of switching intensity, the multiple resonator structure is more advantageous than the single resonator with an equivalently increasing quality factor. It is also shown that a switching intensity-response time product, suggested as a performance metric for optical bistable devices, decreases linearly as the number of cascaded resonators increases. The effect of coupling n resonators is equivalent to a single resonator device with n-time increased quality factor in terms of the performance metric. The coupled-mode theory analysis is confirmed by a numerical study of the bistable operation of one-dimensional photonic crystal resonator structures using the finite-difference time-domain method.
  • Keywords
    coupled mode analysis; finite difference time-domain analysis; optical bistability; optical resonators; optical switches; all-optical switches; coupled-mode theory; finite-difference time-domain method; general nonlinear behavior; intensity-response time products; multiple cascaded resonators; multiple resonator structure; optical bistable operation; single resonator device; switching intensity; Nonlinear optics; Optical bistability; Optical coupling; Optical resonators; Optical switches; Resonant frequency; All-optical devices; bistability; integrated optics devices; nonlinear optics; photonic crystals; resonators;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2012.2221076
  • Filename
    6313873