DocumentCode
1140875
Title
Power and efficiency of a continuous HF chemical laser
Author
Mirels, Harold ; Spencer, Donald J.
Author_Institution
Aerospace Corp., El Segundo, CA, USA
Volume
7
Issue
11
fYear
1971
fDate
11/1/1971 12:00:00 AM
Firstpage
501
Lastpage
507
Abstract
Experimental measurements of laser power output and chemical efficiency are reported for a continuous HF chemical laser. In this device, arc-heated N2 is mixed in a plenum with SF6 to provide F atoms. The mixture is expanded to form a supersonic jet into which H2 is diffused. Population inversion and lasing are due to H2 + F → HF(υ) + H,
H = -31.7 kcal. Power levels up to 1 kW have been obtained. The efficiency of conversion of chemical energy to laser power is 16 percent at low SF6 flow rates and approximately 10 percent at peak power. For a fixed arc power, addition of O2 into the plenum raises peak power by about 25 percent under present operating conditions and reduces sulphur deposition on mirror surfaces. The presence of HF and DF in the plenums of DF and HF lasers, respectively, did not appear to degrade laser performance. (HF and DF levels up to 10 percent of the local F concentration were studied.) However, the presence of HF and DF in the plenums of HF and DF lasers, respectively, did degrade laser output. For given flow conditions, peak net laser power was obtained when the optical cavity axis was about 2 cm downstream of the H2 injection station. The net output power was reduced to zero when the cavity axis location was increased to 5 cm.
H = -31.7 kcal. Power levels up to 1 kW have been obtained. The efficiency of conversion of chemical energy to laser power is 16 percent at low SFKeywords
Atomic beams; Atomic measurements; Chemical lasers; Degradation; Hafnium; Image motion analysis; Mirrors; Power generation; Power lasers; Power measurement;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1971.1076569
Filename
1076569
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