DocumentCode
1100074
Title
Theory of optical maser amplifiers
Author
Arecchi, F. ; Bonifacio, R.
Author_Institution
Centro Info. Study Esperienze, Milan, Italy and Istituto di Fisica delĺUniversità, Milan, Italy
Volume
1
Issue
4
fYear
1965
fDate
7/1/1965 12:00:00 AM
Firstpage
169
Lastpage
178
Abstract
The interaction between an electromagnetic (em) pulse and a maser medium is described by a general set of five equations, under the assumption of a homogeneously broadened electric-dipole transition with two Bloch relaxation times T2 and T1 and of a linear broadband loss mechanism. When the equations are specialized at resonance, their solutions include the results of the previous treatments on the amplifier problem obtained under particular assumptions. The steady-state pulse (S. S. P.) introduced by Wittke and Warter for
is here generalized for
and it is shown to propagate at the same velocity of the light in the medium. In the case
the steady state is described by exact analytical relations. For times short in comparison to the relaxation times, a solution is given which generalizes the usual interaction formula between an em field and a two-level system by introducing propagation effects. In the general case out of resonance, it is shown that an S. S. P. exists, and that its frequency coincides with the frequency of the atomic transition, independent of the frequency of the input field.
is here generalized for
and it is shown to propagate at the same velocity of the light in the medium. In the case
the steady state is described by exact analytical relations. For times short in comparison to the relaxation times, a solution is given which generalizes the usual interaction formula between an em field and a two-level system by introducing propagation effects. In the general case out of resonance, it is shown that an S. S. P. exists, and that its frequency coincides with the frequency of the atomic transition, independent of the frequency of the input field.Keywords
Equations; Frequency; Masers; Optical amplifiers; Optical pulses; Pulse amplifiers; Resonance; Semiconductor optical amplifiers; Steady-state; Stimulated emission;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1965.1072212
Filename
1072212
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