DocumentCode
1141875
Title
Coherence and intensity statistics in phase-conjugate resonators
Author
Lazaruk, A.M. ; Friberg, Ari T. ; Salomaa, R. Rainer E
Author_Institution
Inst. of Phys., Acad. of Sci., Minsk, Byelorussian SSR, USSR
Volume
26
Issue
2
fYear
1990
fDate
2/1/1990 12:00:00 AM
Firstpage
378
Lastpage
389
Abstract
The spectra, coherence properties, and intensity fluctuations of waves generated by reflections of a noisy probe field from a phase-conjugate Fabry-Perot resonator are discussed. The emphasis of the analysis is on the spectral response of the resonator. The results obtained are in fill agreement with those derived using specific noise models in the time domain. Advantages of the frequency-domain analyses include full tractability of general probe-wave noise models and fast convergence of numerical computations. The reflected-wave coherence properties reveal an interesting periodic structure due to multiple intracavity reflections. The intensity fluctuation levels, which depend on the statistical models, are calculated explicitly for pure Markovian phase noise and Gaussian amplitude noise of the probe. Combinations of these two, yielding simple laser models, and other extensions of noise effects in phase-conjugate resonators are briefly discussed
Keywords
cavity resonators; light coherence; light reflection; optical phase conjugation; random noise; statistical analysis; Gaussian amplitude noise; coherence properties; frequency-domain analyses; intensity fluctuations; intensity statistics; laser models; multiple intracavity reflections; noisy probe field; periodic structure; phase-conjugate Fabry-Perot resonator; phase-conjugate resonators; probe-wave noise models; pure Markovian phase noise; reflected wave fluctuations; reflected-wave coherence properties; resonator spectral response; specific noise models; statistical models; time domain; Acoustic reflection; Coherence; Fabry-Perot; Fluctuations; Frequency domain analysis; Noise generators; Optical reflection; Phase noise; Probes; Statistics;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/3.44971
Filename
44971
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