• DocumentCode
    816891
  • Title

    Fully programmable ring-resonator-based integrated photonic circuit for phase coherent applications

  • Author

    Agarwal, Anjali ; Toliver, Paul ; Menendez, Ronald ; Etemad, Shahab ; Jackel, Janet ; Young, Jeffrey ; Banwell, Thomas ; Little, B.E. ; Chu, S.T. ; Chen, Wei ; Chen, Wenlu ; Hryniewicz, J. ; Johnson, F. ; Gill, D. ; King, O. ; Davidson, R. ; Donovan, K. ;

  • Author_Institution
    Telcordia Technol., USA
  • Volume
    24
  • Issue
    1
  • fYear
    2006
  • Firstpage
    77
  • Lastpage
    87
  • Abstract
    A novel ring-resonator-based integrated photonic chip with ultrafine frequency resolution, providing programmable, stable, and accurate optical-phase control is demonstrated. The ability to manipulate the optical phase of the individual frequency components of a signal is a powerful tool for optical communications, signal processing, and RF photonics applications. As a demonstration of the power of these components, we report their use as programmable spectral-phase encoders (SPEs) and decoders for wavelength-division-multiplexing (WDM)-compatible optical code-division multiple access (OCDMA). Most important for the application here, the high resolution of these ring-resonator circuits makes possible the independent control of the optical phase of the individual tightly spaced frequency lines of a mode-locked laser (MLL). This unique approach allows us to limit the coded signal´s spectral bandwidth, thereby allowing for high spectral efficiency (compared to other OCDMA systems) and compatibility with existing WDM systems with a rapidly reconfigurable set of codes. A four-user OCDMA system using polarization multiplexing is shown to operate at data rates of 2.5 Gb/s within a 40-GHz transparent optical window with a bit error rate (BER) better than 10-9 and a spectral efficiency of 25%.
  • Keywords
    code division multiple access; decoding; encoding; error statistics; integrated optics; laser mode locking; optical communication equipment; optical fibre communication; optical fibre polarisation; optical resonators; wavelength division multiplexing; RF photonics applications; bit error rate; fully programmable ring-resonator; high spectral efficiency; integrated photonic circuit; mode-locked laser; optical code-division multiple access; optical communications; optical-phase control; phase coherent applications; polarization multiplexing; programmable spectral-phase decoders; programmable spectral-phase encoders; reconfigurable codes; ring resonator circuits; signal processing; spectral bandwidth; tightly spaced frequency lines; transparent optical window; ultrafine frequency resolution; wavelength-division-multiplexing; Bit error rate; Circuits; Communication system control; Frequency; Integrated optics; Optical control; Optical devices; Optical signal processing; Signal resolution; Wavelength division multiplexing; Fiber-optics communications; integrated optics; optical code-division multiple access (OCDMA); pulse shapers; ring resonators;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2005.861145
  • Filename
    1589036