DocumentCode
1081839
Title
Propagation analysis of forward degenerate four-wave mixing
Author
Maruani, Alain
Author_Institution
Centre National d´´Etudes des Telecommunications, Bagneaux, France
Volume
16
Issue
5
fYear
1980
fDate
5/1/1980 12:00:00 AM
Firstpage
558
Lastpage
566
Abstract
We discuss the propagation problem associated with the forward four-wave degenerate mixing induced by the third-order non-linear susceptibility
. Exact analytical solutions are presented of two-photon resonances, evidencing the influence of the Kerr effect on the efficiency of the process. Around a two-photon resonance, we solve the problem of the nearly parallel propagation of two beams undergoing auto and induced two-photon absorption (TPA). The resonant interaction is studied in detail and analytical solutions are provided with operational accuracy for current experimental conditions. We show by the way that in the two-beam two-photon experiments, when the phase matching condition is fulfilled, although TPA is governed by
, the real part of
must be considered in a substantial way. All the above solutions are put in a form simple enough that the numerical computations can be performed on a programmable calculator.
. Exact analytical solutions are presented of two-photon resonances, evidencing the influence of the Kerr effect on the efficiency of the process. Around a two-photon resonance, we solve the problem of the nearly parallel propagation of two beams undergoing auto and induced two-photon absorption (TPA). The resonant interaction is studied in detail and analytical solutions are provided with operational accuracy for current experimental conditions. We show by the way that in the two-beam two-photon experiments, when the phase matching condition is fulfilled, although TPA is governed by
, the real part of
must be considered in a substantial way. All the above solutions are put in a form simple enough that the numerical computations can be performed on a programmable calculator.Keywords
Optical mixers; Four-wave mixing; Frequency conversion; Laser beams; Laser excitation; Nonlinear systems; Resonance; Signal processing; Spectroscopy; Structural beams; Testing;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1980.1070512
Filename
1070512
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