• DocumentCode
    1544939
  • Title

    Switchable and Tunable Dual-Line Erbium-Doped Fiber Ring Laser in the C - Plus L -Band Based on M

  • Author

    Sun, Guoyong ; Hu, Yihui ; Chung, Youngjoo

  • Author_Institution
    Dept. of Phys., Shantou Univ., Shantou, China
  • Volume
    22
  • Issue
    19
  • fYear
    2010
  • Firstpage
    1440
  • Lastpage
    1442
  • Abstract
    A simple but novel concept of switchable and tunable dual-line erbium-doped fiber ring laser in the C - plus L -band is proposed and demonstrated. It is based on concurrence of the Sagnac and modal interferences in a fiber loop mirror including cascaded high birefringence few-mode fiber (HB-FMF) and polarization controller (PC). Random combination of the two lasing lines, one in the C-band and the other in the L-band, can be realized by adjusting only the PC next to the HB-FMF in the loop arm. In addition, they can be simultaneously tuned at a discrete step equal to the channel spacing of the modal interference. The output power flatness is better than ±0.5 dB for both the single- and dual-line emissions by carefully choosing the HB-FMF length with the 3-dB spectral linewidth narrower than 0.03 nm and signal-to-noise extinction ratio higher than 40 dB during the whole switching and tuning processes.
  • Keywords
    channel spacing; erbium; fibre lasers; laser mirrors; laser tuning; light interference; optical communication equipment; optical fibre networks; optical fibre polarisation; optical switches; ring lasers; C-L band merged interference effects; JkJk:Er; Sagnac interference; cascaded birefringence; channel spacing; dual-line erbium-doped fiber ring laser; fiber loop mirror; laser tuning; modal interference; optical switching; polarization controller; signal-to-noise extinction; Birefringence; Channel spacing; Erbium-doped fiber lasers; Interference; Mirrors; Optical fiber polarization; Power generation; Ring lasers; Sagnac interferometers; Tunable circuits and devices; Erbium-doped fiber (EDF); few mode (FM); fiber lasers; high birefringence fiber (HBF);
  • fLanguage
    English
  • Journal_Title
    Photonics Technology Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1041-1135
  • Type

    jour

  • DOI
    10.1109/LPT.2010.2060319
  • Filename
    5518385