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Rose, E.; Hanson, D.; Krohn, B.; McLeod, J.; Kang, M.
Los Alamos National Lab., NM (USA)1988
Los Alamos National Lab., NM (USA)1988
AbstractAbstract
[en] A design study is underway to define the optimal architecture for a KrF laser system which will deliver 10 MJ of 248-nm light to an ICF target. We present one approach which incorporates final power amplifiers in the megajoule class, achieving 10 MJ with four final amplifiers. Each double-pass laser amplifier employs two-sided electron-beam pumping of the laser gas medium. Details of the design are based on a Monte-Carlo electron-beam deposition code, a one-dimensional, time-dependent kinetics code, and pulsed power circuit modeling. Linear dimensions of the amplifier's extracted gain volume are 6.25 m in height and length and 5.12 m in width. Each amplifier handles 160 angularly multiplexed laser channels. The one-amagat, krypton-rich laser medium is e-beam pumped at 60-kW cm/sup /minus/3/ (4-MA at3.3-MV) over the 2-microsecond duration of the laser beam pulse train. 5 refs., 4 figs
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1988; 12 p; 8. topical meeting on technology of fusion energy; Salt Lake City, UT (USA); 9-13 Oct 1988; CONF-881031--35; Available from NTIS, PC A03/MF A01 - OSTI; 1 as DE89002241; Portions of this document are illegible in microfiche products.
Record Type
Report
Literature Type
Conference; Numerical Data
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