Diode-pumped regenerative amplifier for the OMEGA laser system

Baltimore, MD, USA(1999)

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摘要
Summary form only given. The 60-beam OMEGA Nd:glass-based laser irradiates ICF targets with 30-kJ UV pulses with an arbitrary temporal pulse shape predetermined by the target design. The OMEGA front-end design requires a regenerative amplifier (regen) capable of boosting the shaped pulses from the nJ level to /spl sim/400 /spl mu/J. The required output energy stability is better than 2%. The amplification must be reliable, cause minimal pulse-shape distortions, and allow output pulse-shape prediction regardless of the input pulse shape. These requirements must be demonstrated with a large safety margin to allow reliable OMEGA operation on a daily basis over a long period of time. We present the design and performance data of the diode-pumped and feedback-controlled regen for the OMEGA laser system. The efficient end-pumping geometry provides high gain and a high-quality spatial output profile. The diode-pumping and negative feedback control make the regen operation highly stable and reliable.
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关键词
fusion reactor instrumentation,laser accessories,laser beams,laser fusion,laser reliability,laser stability,neodymium,optical glass,optical pulse compression,optical pulse shaping,optical pumping,solid lasers,30 kj,400 muj,icf targets,nd:glass-based laser,omega front-end design,omega laser system,uv pulses,amplification,arbitrary temporal pulse shape,design,diode-pumped and feedback-controlled regen,diode-pumped regenerative amplifier,diode-pumping,end-pumping geometry,feedback-controlled regen,high gain spatial output profile,high-quality spatial output profile,input pulse shape,minimal pulse-shape distortions,nj level,negative feedback control,output energy stability,output pulse-shape prediction,performance data,regen,regen operation,regenerative amplifier,reliable omega operation,shaped pulses,target design,shape,diodes,boosting,negative feedback,plasma physics,pulse shaping,stability,front end
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