• DocumentCode
    1135567
  • Title

    Thin-Disk Yb:YAG Oscillator-Amplifier Laser, ASE, and Effective Yb:YAG Lifetime

  • Author

    Antognini, Aldo ; Schuhmann, Karsten ; Amaro, Fernando D. ; Biraben, François ; Dax, Andreas ; Giesen, Adolf ; Graf, Thomas ; Hänsch, Theodor W. ; Indelicato, Paul ; Julien, Lucile ; Kao, Cheng-Yang ; Knowles, Paul E. ; Kottmann, Franz ; Le Bigot, Eric ;

  • Author_Institution
    Max-Planck-Inst. fur Quantenopt., Garching, Germany
  • Volume
    45
  • Issue
    8
  • fYear
    2009
  • Firstpage
    993
  • Lastpage
    1005
  • Abstract
    We report on a thin-disk Yb:YAG laser made from a Q-switched oscillator and a multipass amplifier delivering pulses of 48 mJ at 1030 nm. The peculiar requirements for this laser are the short delay time (< 500 ns) between electronic trigger and optical output pulse and the time randomness with which these triggers occur (with trigger to next trigger delay ges 1.5 ms). Details concerning the oscillator dynamics (-switching cycle, intensity stabilization), and the peculiar amplifier layout are given. Simulations of the beam propagation in the amplifier based on the Collins integral and the measured aspherical components of the disk reproduce well the measured beam intensity profiles (with higher order intensity moments) and gains. Measurements of the thermal lens and ASE effects of the disk are also presented. A novel method to deduce the effective Yb:YAG upper state lifetime (under real laser operation and including ASE effects) is presented. That knowledge is necessary to determine gain and stored energy in the active medium and to understand the limiting factors for energy scaling of thin-disk lasers.
  • Keywords
    Q-switching; aspherical optics; laser beams; laser stability; microdisc lasers; optical pulse generation; solid lasers; superradiance; thermal lensing; ytterbium; yttrium compounds; ASE effect; Collins integral; Q-switched oscillator; YAG:Yb; active medium; aspherical component; beam intensity profile; beam propagation; effective lifetime; electronic trigger; energy 48 mJ; energy scaling; higher-order intensity moment; intensity stabilization; multipass amplifier; optical output pulse generation; thermal lens; thin-disk oscillator-amplifier laser; time randomness; wavelength 1030 nm; Delay effects; Gain measurement; Laser beams; Optical amplifiers; Optical propagation; Optical pulses; Oscillators; Pulse amplifiers; Stimulated emission; Thermal lensing; $Q$-switch; Amplified spontaneous emission (ASE); Collins integral; diode-pumped laser; effective Yb:YAG lifetime; multipass amplifier; oscillator; prelasing; thermal lens; thin-disk laser;
  • fLanguage
    English
  • Journal_Title
    Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/JQE.2009.2014881
  • Filename
    5165103