DocumentCode
1056529
Title
Molecular saturation and the criterion for passive Q switching
Author
Oppenheim, Uri P. ; Kaufman, Yoram J.
Author_Institution
Technion-Israel Institute of Technology, Haifa, Israel
Volume
10
Issue
7
fYear
1974
fDate
7/1/1974 12:00:00 AM
Firstpage
533
Lastpage
540
Abstract
Rotational hole burning is known to be the main factor that determines saturation in molecular absorbers during a short pulse. Experimental results are presented that suggest that pulse transmission measurements, as opposed to CW transmission measurements, must be used in order to determine if a gas can be used as a saturable absorber in passive
switching. Rate equations are developed for a five-state model to explain saturation in SF6 . This model is found to predict CW and pulse transmission through SF6 at various lines of the 10.4-μm band of the CO2 laser. A simplified model is developed for pulse transmission through saturable gases and is solved analytically for the peak of the pulse. It is found that the absorption coefficient of the absorber at the peak of the pulse is given by a simple expression, which leads directly to a new criterion for passive
switching. An experimental test of this criterion is carried out for several mixtures of SF6 and He which act as saturable absorbers under varying conditions of irradiation. It is found that the transition from CW to pulsed operation is very sharp and occurs at a well-defined value of radiation intensity.
switching. Rate equations are developed for a five-state model to explain saturation in SF
switching. An experimental test of this criterion is carried out for several mixtures of SFKeywords
Absorption; Equations; Gas lasers; Gases; Laser modes; Optical pulses; Predictive models; Pulse measurements; Q measurement; Testing;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1974.1068202
Filename
1068202
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