Impact of pump-phase modulation on dual-pump fiber-optic parametric amplifiers and wavelength converters

Modulation of pump phases required for suppressing stimulated-Brillouin scattering is shown to cause large power changes in both the amplified and wavelength-converted signals when dual-pump fiber-optic parametric amplifiers are used. The physical origin of power changes is related to pump-amplitude...

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Veröffentlicht in:IEEE photonics technology letters 2005-10, Vol.17 (10), p.2053-2055
Hauptverfasser: Yaman, F., Qiang Lin, Radic, S., Agrawal, G.P.
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Qiang Lin
Radic, S.
Agrawal, G.P.
description Modulation of pump phases required for suppressing stimulated-Brillouin scattering is shown to cause large power changes in both the amplified and wavelength-converted signals when dual-pump fiber-optic parametric amplifiers are used. The physical origin of power changes is related to pump-amplitude modulations caused by fiber dispersion. Analytical as well as numerical calculations show that the signal-to-noise ratio of the signal or idler may reduce to below 23 dB when pump phases change rapidly with a sharp rise time.
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subjects Brillouin scattering
Dispersions
Fiber nonlinear optics
Fiber optics
Mathematical analysis
Modulation
Optical fiber amplifiers
Optical fiber polarization
Optical fibers
optical phase conjugation
Optical pumping
Optical scattering
Optical wavelength conversion
Parametric amplifiers
Phase modulation
Photonics
Power amplifiers
Pumps
Signal to noise ratio
wavelength conversion
title Impact of pump-phase modulation on dual-pump fiber-optic parametric amplifiers and wavelength converters
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