Locked phase conjugation for two-beam coupling of pulse repetition rate solid-state lasers

Theoretical and experimental results obtained in the study of phase-locked conjugation of two light beams using a phase synchronizer demonstrate how phase conjugation of depolarized radiation can be used to compensate aberration and depolarization distortions in solid-state media. Two-beam phase con...

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Veröffentlicht in:IEEE journal of quantum electronics 1991-01, Vol.27 (1), p.135-141
Hauptverfasser: Andreev, N.F., Khazanov, E.A., Kuznetsov, S.V., Pasmanik, G.A., Shklovsky, E.I., Sidorin, V.S.
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container_end_page 141
container_issue 1
container_start_page 135
container_title IEEE journal of quantum electronics
container_volume 27
creator Andreev, N.F.
Khazanov, E.A.
Kuznetsov, S.V.
Pasmanik, G.A.
Shklovsky, E.I.
Sidorin, V.S.
description Theoretical and experimental results obtained in the study of phase-locked conjugation of two light beams using a phase synchronizer demonstrate how phase conjugation of depolarized radiation can be used to compensate aberration and depolarization distortions in solid-state media. Two-beam phase conjugation via mutual scattering of orthogonally polarized pump waves under four-wave mixing is discussed. A novel analog operation-orthogonal phase conjugation (OPC)-involving an electromagnetic field was realized with a phase synchronizer.< >
doi_str_mv 10.1109/3.73551
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subjects 426002 - Engineering- Lasers & Masers- (1990-)
Adaptive optics
ENGINEERING
Exact sciences and technology
Four-wave mixing
Fundamental areas of phenomenology (including applications)
Laser beams
LASERS
NONLINEAR OPTICS
Optical coupling
Optical mixing
Optical pulses
OPTICAL PUMPING
Optical scattering
OPTICS
Physics
PUMPING
SCATTERING
Solid lasers
SOLID STATE LASERS
title Locked phase conjugation for two-beam coupling of pulse repetition rate solid-state lasers
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