DocumentCode
1144465
Title
A simplified model for predicting gain, saturation, and pulse length for gas dynamic lasers
Author
Hoffman, Alan L. ; Vlases, George C.
Author_Institution
Mathematical Sciences Northwest, Inc., Seattle, WA, USA
Volume
8
Issue
2
fYear
1972
fDate
2/1/1972 12:00:00 AM
Firstpage
46
Lastpage
53
Abstract
A single time-scale model is developed to describe the 10.6-μ laser energy extraction from an initially inverted N2 -CO2 catalyst mixture where the energy is stored primarily in the N2 vibration. This condition is typical of high-pressure gas dynamic lasers, but the methods are general and applicable to other systems. In the absence of external pumping, the nitrogen can be regarded as an energy source that is depleted on a time scale
being the minimum possible time scale governed by collisional processes, τ determines the pulse time for
-switched laser mixtures or the required streamwise cavity length for CW gas dynamic lasers. The derived saturation intensity I0 also appears in the expression for saturated gain (for collision broadened cases)
, where g0 is approximately the small signal gain at a given nitrogen vibrational temperature, g0 decays on the same intensity-dependent time scale τ as the nitrogen vibrational energy.
being the minimum possible time scale governed by collisional processes, τ determines the pulse time for
-switched laser mixtures or the required streamwise cavity length for CW gas dynamic lasers. The derived saturation intensity I
, where gKeywords
Chemical analysis; Gas lasers; Kinetic theory; Laser modes; Laser theory; Nitrogen; Nonlinear equations; Optical pulses; Predictive models; Pump lasers;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1972.1076928
Filename
1076928
Link To Document