DocumentCode
1104227
Title
Electron-beam pumped KrF laser extraction measurements for high Kr concentration gas mixtures
Author
Salesky, E.T. ; Kimura, W.D.
Author_Institution
North East Research Associates, Woburn, MA, USA
Volume
21
Issue
11
fYear
1985
fDate
11/1/1985 12:00:00 AM
Firstpage
1761
Lastpage
1765
Abstract
Energy extraction measurements are obtained with a 350 ns electron-beam pumped KrF laser (Ar diluent) at Kr concentrations from 4-99.6 percent. During the measurements, the F2 number density is held constant at
cm-3, and the average pump rate is maintained at ≈120 kW/cm3by adjusting the total pressure of the gas mixtures in order to compensate for the different electron stopping powers of Ar and Kr. For the 4, 10, and 99.6 percent Kr cases, total pressures are 1040, 1004, and 665 torr, respectively. Average output efficiencies in percent of 9.3 at 4 percent Kr, 11.2 at 10 percent Kr, and 9.2 at 99.6 percent Kr are obtained. Peak power efficiencies in percent of 9.6 at 4 percent Kr, 12.5 at 10 percent Kr, and 11.6 at 99.6 percent Kr are derived from the data. Our computer model predictions agree with the results.
cm-3, and the average pump rate is maintained at ≈120 kW/cm3by adjusting the total pressure of the gas mixtures in order to compensate for the different electron stopping powers of Ar and Kr. For the 4, 10, and 99.6 percent Kr cases, total pressures are 1040, 1004, and 665 torr, respectively. Average output efficiencies in percent of 9.3 at 4 percent Kr, 11.2 at 10 percent Kr, and 9.2 at 99.6 percent Kr are obtained. Peak power efficiencies in percent of 9.6 at 4 percent Kr, 12.5 at 10 percent Kr, and 11.6 at 99.6 percent Kr are derived from the data. Our computer model predictions agree with the results.Keywords
Noble-gas lasers; Apertures; Argon; Density measurement; Electrons; Gas lasers; Laboratories; Laser excitation; Laser fusion; Laser modes; Pump lasers;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1985.1072586
Filename
1072586
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