• DocumentCode
    18949
  • Title

    Modeling and Optimization of Cascaded Erbium and Holmium Doped Fluoride Fiber Lasers

  • Author

    Jianfeng Li ; Hongyu Luo ; Yong Liu ; Lin Zhang ; Jackson, Stuart D.

  • Author_Institution
    State Key Lab. of Electron. Thin Films & Integrated Devices, Univ. of Electron. Sci. & Technol. of China, Chengdu, China
  • Volume
    20
  • Issue
    5
  • fYear
    2014
  • fDate
    Sept.-Oct. 2014
  • Firstpage
    15
  • Lastpage
    28
  • Abstract
    Numerical modeling of cascade erbium-doped and holmium-doped fluoride fiber lasers is presented. Fiber lengths were optimized for cascade lasers that had fixed or free-running wavelengths using all known spectroscopic parameters. The performance of the cascade laser was tested against dopant concentration, energy transfer process, heat generation, output coupling, and pump schemes. The results suggest that the slope efficiencies and thresholds for both transitions increase with increasing Ho3+ or Er3+ concentration with the slope efficiency stabilizing after 1 mol% rare earth doping. The heat generation in the Ho3+ -based system is lower compared to the Er3+-based system at low dopant concentration as a result of the lower rates of multiphonon relaxation. Decreasing the output coupling for the upper (~3 μm) transition decreases the threshold of the lower transition and the upper transition benefits from decreasing the output coupling for the lower transition for both cascade systems. The highest slope efficiency was achieved under counter-propagating pump conditions. Saturation of the output power occurs at comparatively higher pump power with dilute Er3+ doping compared with heavier doping. Overall, we show that the cascade Ho3+-doped fluoride laser is the best candidate for high power output because of its higher slope efficiency and lower temperature excursion of the core and no saturation of the output.
  • Keywords
    aluminium compounds; barium compounds; erbium; fibre lasers; holmium; impurity distribution; lanthanum compounds; optical pumping; sodium compounds; zirconium compounds; ZBLAN:Er; ZBLAN:Ho; cascaded fiber lasers; counter propagating pump condition; dopant concentration; energy transfer process; free running wavelength; heat generation; multiphonon relaxation; optical pumping; output coupling; output power saturation; Ions; Laser excitation; Laser modes; Laser transitions; Power lasers; Pump lasers; Quantum cascade lasers; Cascade fiber lasers; fiber lasers; fluoride glass; mid-infrared;
  • fLanguage
    English
  • Journal_Title
    Selected Topics in Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    1077-260X
  • Type

    jour

  • DOI
    10.1109/JSTQE.2013.2290272
  • Filename
    6680666