• DocumentCode
    1402234
  • Title

    Continuous-wave power performance of a 2.47-/spl mu/m Cr/sup 2+/:ZnSe laser: experiment and modeling

  • Author

    Sennaroglu, Alphan ; Konca, A. Ozgun ; Pollock, Clifford R.

  • Author_Institution
    Optoelectron. Lab., Koc Univ., Istanbul, Turkey
  • Volume
    36
  • Issue
    10
  • fYear
    2000
  • Firstpage
    1199
  • Lastpage
    1205
  • Abstract
    Power performance of a continuous-wave Cr/sup 2+/:ZnSe laser was investigated experimentally and numerically at 2.47 /spl mu/m. In the experiments, an astigmatically compensated z-cavity with a 3% transmitting output coupler produced as high as 250 mW of output power when excited by a NaCl:OH/sup $/color-center laser at 1.58 /spl mu/m. The measured absorbed power slope efficiency was 24.2%. Experimental pump absorption saturation and laser efficiency data were analyzed by using a numerical model to determine the absorption, emission, and excited-state absorption cross-sections. Simulations were then performed to investigate the dependence of the output power on crystal and resonator parameters. Results indicate that optimum power performance should be obtained with a 1.5-cm-long crystal which has a total unsaturated absorption of 86%. Finally, the optimum output coupling of the resonator was determined to be 10%.
  • Keywords
    chromium; laser cavity resonators; laser theory; laser transitions; optical couplers; optical pumping; solid lasers; zinc compounds; 1.5 cm; 1.58 mum; 2.47 mum; 2.47-/spl mu/m Cr/sup 2+/:ZnSe laser; 24.2 percent; 250 mW; Cr/sup 2+/:ZnSe laser; NaCl:OH/sup -/ color-center laser; ZnSe:Cr; astigmatically compensated z-cavity; continuous-wave power performance; excited-state absorption cross-sections; laser efficiency data; measured absorbed power slope efficiency; optimum output coupling; optimum power performance; output coupler; output power; pump absorption saturation; unsaturated absorption; Absorption; Chromium; Laser excitation; Laser modes; Optical coupling; Power generation; Power lasers; Power measurement; Pump lasers; Zinc compounds;
  • fLanguage
    English
  • Journal_Title
    Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/3.880661
  • Filename
    880661