• DocumentCode
    1471371
  • Title

    Design of 980 nm-Pumped Waveguide Laser for Continuous Wave Operation in Ion Implanted {\\rm Er}{:}{\\rm LiNbO}_{3}

  • Author

    Sher, Sohel Mahmud ; Pintus, Paolo ; Pasquale, Fabrizio Di ; Bianconi, Marco ; Montanari, Giovanni Battista ; De Nicola, Pietro ; Sugliani, Simone ; Prati, Giancarlo

  • Author_Institution
    Centre of Excellence for Inf., Commun. & Perception Eng., Scuola Superiore Sant´´ Anna, Pisa, Italy
  • Volume
    47
  • Issue
    4
  • fYear
    2011
  • fDate
    4/1/2011 12:00:00 AM
  • Firstpage
    526
  • Lastpage
    533
  • Abstract
    Embedded channel waveguides formed on a z-cut erbium-doped lithium niobate (Er:LiNbO3) substrate by a high-energy ion implantation technique are first described. A detailed theoretical design of a waveguide laser for continuous wave operation is then discussed, taking into account realistic input parameters and measured data. To simulate waveguide modes and to predict laser outputs from our fabricated waveguide sample, a numerical tool is developed in FORTRAN based on the full vectorial finite element method. Using the developed tools, the waveguide dimension is optimized, ensuring single-mode operation at both pump (980 nm) and laser (1531 nm) wavelengths. Finally, laser outputs as a function of various waveguide parameters are analyzed. The proposed analysis allows the effective optimization of the ion-implanted waveguide laser in Er:LiNbO3.
  • Keywords
    erbium; finite element analysis; lithium compounds; optical design techniques; optical fabrication; optical pumping; optimisation; waveguide lasers; FORTRAN; LiNbO3:Er; channel waveguides; continuous wave operation; finite element method; high-energy ion implantation; ion-implanted waveguide laser; laser outputs; optimization; pumped waveguide laser; wavelength 1531 nm; wavelength 980 nm; z-cut erbium-doped lithium niobate substrate; Indexes; Ion implantation; Laser excitation; Laser modes; Optical waveguides; Pump lasers; Waveguide lasers; Embedded channel waveguide; erbium; ion implantation; lithium niobate; waveguide laser design;
  • fLanguage
    English
  • Journal_Title
    Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/JQE.2010.2094603
  • Filename
    5730174