DocumentCode
1132497
Title
High rate optical amplification
Author
Wagner, William G. ; Haus, Hermann A. ; Gustafson, Kenneth T.
Author_Institution
Hughes Research Lab., Malibu, CA, USA
Volume
4
Issue
5
fYear
1968
fDate
5/1/1968 12:00:00 AM
Firstpage
267
Lastpage
273
Abstract
The equations of
switching are reexamined for a homogeneously broadened two-level material. It is shown that inertial effects in the material polarizability may play an important role in
switching of lasers of narrow material linewidth. It is further shown that it is possible to amplify pulses of durations shorter than the inverse linewidth of the active material, provided the pulses are energetic enough to produce appreciable nonlinear behavior of the material. In this way it should be possible to produce, from a relatively long pulse, pulses of duration short compared to the inverse linewidth of the amplifying material. Numerical examples are given based on numbers pertinent to the CO2 laser. Even though the model of a homogeneously broadened two-level system is an oversimplification of CO2 laser operation, it is believed that guidelines for future work on CO2 systems can be gleaned from these results.
switching are reexamined for a homogeneously broadened two-level material. It is shown that inertial effects in the material polarizability may play an important role in
switching of lasers of narrow material linewidth. It is further shown that it is possible to amplify pulses of durations shorter than the inverse linewidth of the active material, provided the pulses are energetic enough to produce appreciable nonlinear behavior of the material. In this way it should be possible to produce, from a relatively long pulse, pulses of duration short compared to the inverse linewidth of the amplifying material. Numerical examples are given based on numbers pertinent to the COKeywords
Equations; Laboratories; Laser modes; Laser theory; Optical materials; Optical pulses; Pulse amplifiers; Space vector pulse width modulation; Steady-state; Stimulated emission;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1968.1075309
Filename
1075309
Link To Document