• DocumentCode
    2702303
  • Title

    Modeling of XeCl-laser excitation systems on storage capacitors

  • Author

    Anufrik, Slavomir ; Volodenkov, Alexander ; Znosko, Kazimir

  • Author_Institution
    Yanka Kupala Grodno State Univ.
  • fYear
    2005
  • fDate
    15-17 Sept. 2005
  • Firstpage
    23
  • Lastpage
    26
  • Abstract
    With the purpose of reception of energy of generation 0,2-1 J, two types of electrodischarge XeCl-laser excitation system with was created. The modeling procedure of XeCl-laser excitation systems is developed, allowing to calculate the form of a voltage pulse on laser electrodes and energy input in the active medium. The dependence of discharge gap resistance on time is usually simulated by exponential empirical dependence. In this case the breakdown voltage of inter-electrode gap must be taken from experimental data also. For each gas mixture, parameters of time dependence of discharge gap resistance and value of inter-electrode breakdown voltage have different values. Consequently, the results, which are obtained in this manner, have practical significance for definite gas ratio of mixture, We have developed the simple model, which takes into account the dependence of discharge gap parameters from gas pressure and composition. The solution of Boltzmann equation for electrons in electrical field (E/N) and calculation of kinetic processes may be carried out. In this case the effective rate of electrons formation may be approximated as function of gas composition and (E/N). Results of one model are compared to results of other model and experimental data
  • Keywords
    Boltzmann equation; capacitor storage; discharges (electric); excimer lasers; gas mixtures; optical pumping; xenon compounds; Boltzmann equation; LC-contour; LC-inverter; XeCl; XeCl-laser excitation system modeling; discharge gap resistance; electrical field; electrodischarge; exponential empirical dependence; gas composition; gas mixture; gas pressure; inter-electrode breakdown voltage; inter-electrode gap; kinetic process; laser electrode; storage capacitor; voltage pulse; Boltzmann equation; Capacitors; Electrodes; Electrons; Gas lasers; Kinetic theory; Laser excitation; Laser modes; Optical pulses; Voltage;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Laser and Fiber-Optical Networks Modeling, 2005. Proceedings of LFNM 2005. 7th International Conference on
  • Conference_Location
    Yalta, Crimea
  • Print_ISBN
    0-7803-9147-0
  • Type

    conf

  • DOI
    10.1109/LFNM.2005.1553179
  • Filename
    1553179