DocumentCode :
1148384
Title :
Chemical laser study of the reaction F + HI by the equal-gain technique
Author :
Coombe, R. ; Pimentel, G. ; Berry, M.
Author_Institution :
Department of Chemistry, University of California, Berkeley, CA
Volume :
9
Issue :
1
fYear :
1973
fDate :
1/1/1973 12:00:00 AM
Firstpage :
192
Lastpage :
192
Abstract :
Vacuum ultraviolet photolysis of CF3I provides a convenient fluorine atom source for chemical laser studies, as noted by Berry. Following Berry, we have used this source for a study of laser emission from the reaction. F + HI → HF + I, \\Delta H = -64 kcal. Laser emission is observed from all vibrational transitions up to \\upsilon = 6 \\rightarrow 5 , indicating that as much as 94 percent of the reaction energy can go into HF vibrational excitation. The \\upsilon = 4 \\rightarrow 3 transition displays highest gain; \\upsilon = 4 requires about 63 percent of the available energy. The equal gain temperature technique has been used to measure the rate constant ratio, k_{4}/k_{3} . The result obtained, k_{4}/k_{3} = 1.19 \\pm 0.03 , is in good agreement with recent measurements based upon infrared chemiluminescence. Experiments directed at measuring the temperature dependence of such rate constant ratios were described. Equal gain measurement of the same ratio at different temperatures are possible since the highest gain transitions change with temperature. The reaction studied was F + D2→ DF + D, \\Delta H = -32 kcal. CF2I was the fluorine source. The value of k_{3}/k_{2} , was found to be 1.5± 0.1 at 301 K. Preliminary data suggested a monotonic rise in the ratio as the temperature was increased, iu qualitative agreement with the molecular beam results reported by Lee et al.
Keywords :
Atom lasers; Atomic beams; Chemical lasers; Displays; Gain measurement; Hafnium; Laser excitation; Laser transitions; Temperature dependence; Temperature measurement;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.1973.1077319
Filename :
1077319
Link To Document :
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