• DocumentCode
    1418890
  • Title

    Transmission of 640-Gb/s RZ-OOK Channel Over 100-km SSMF by Wavelength-Transparent Conjugation

  • Author

    Kuo, Bill P P ; Myslivets, Evgeny ; Wiberg, Andreas O J ; Zlatanovic, Sanja ; Brès, Camille-Sophie ; Moro, Slaven ; Gholami, Faezeh ; Peric, Ana ; Alic, Nikola ; Radic, Stojan

  • Author_Institution
    Univ. of California San Diego, La Jolla, CA, USA
  • Volume
    29
  • Issue
    4
  • fYear
    2011
  • Firstpage
    516
  • Lastpage
    523
  • Abstract
    We report the first demonstration of 640-Gb/s return-to-zero ON-OFF keying channel transmission over a 100-km standard single-mode fiber link employing midspan phase conjugation. A frequency-degenerate conjugate field spanning more than 20 nm is created in a low-birefringence parametric mixer for the first time. Physical separation of the conjugate field from the original field is enabled by utilizing pump polarization nondegeneracy. Rigorous link characterization using a high-quality 640-Gb/s transmitter and a high-sensitivity receiver revealed error-free (bit error ratio <;10-9) performance, eliminating the need for impractical fiber length control or electronic signal processing. The compatibility of wavelength-transparent conjugation with spectrally inefficient channel implies that channels with higher bit rates and better spectral efficiency can also be compensated.
  • Keywords
    amplitude shift keying; channel coding; error statistics; multiwave mixing; optical links; optical receivers; optical transmitters; submillimetre wave mixers; wireless channels; RZ-OOK channel; SSMF; bit rate 640 Gbit/s; distance 100 km; error-free performance; four wave mixing; frequency-degenerate conjugate field; high-quality transmitter; high-sensitivity receiver; low-birefringence parametric mixer; pump polarization nondegeneracy; return-to-zero ON-OFF keying channel transmission; single-mode fiber link; wavelength-transparent conjugation; Optical fiber amplifiers; Optical fiber dispersion; Optical fiber polarization; Optical transmitters; Dispersion compensation (DC); four-wave mixing (FWM); optical time-division multiplexing (OTDM); phase conjugation;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2010.2103354
  • Filename
    5680693