DocumentCode
381555
Title
Tutorial: applications of Raman gain in optical transmission systems
Author
Evans, Adrian
Author_Institution
Dept. Sci. & Technol., Corning Inc., NY, USA
fYear
2002
fDate
17-22 Mar 2002
Firstpage
472
Abstract
The nonlinear stimulated Raman scattering process leads to broadband amplification when high power 14 xx nm pump photons scatter off vibrations of the glass matrix (acoustic phonons), down-shift in frequency and coherently add to signal photons. While erbium-doped fiber amplifiers spent the 1990´s becoming the preferred commercially viable amplification technology, there has been renewed interest in Raman amplification. The prime reason is it´s ability to provide distributed amplification along transmission fiber, hence acting as a low-noise pre-amplifier enabling ultra-long 10Gbps as well as 40 Gbps transmission. Additionally, bandwidth flexibility-particularly it´s location, magnitude and flatness-has increased excitement of all-Raman systems. This tutorial will cover the fundamentals of Raman amplification, compare it to erbium amplifiers, discuss distributed and discrete applications and review recent Raman-based transmission experiments.
Keywords
Raman lasers; optical fibre amplifiers; optical fibre communication; optical pumping; preamplifiers; stimulated Raman scattering; Raman amplification; Raman gain; Raman-based transmission experiments; acoustic phonons; all-Raman systems; amplification technology; broadband amplification; discrete applications; distributed amplification; distributed applications; erbium amplifiers; erbium-doped fiber amplifiers; glass matrix; low-noise pre-amplifier; nonlinear stimulated Raman scattering process; optical transmission systems; pump photons scattering; review; signal photons; tutorial; Acoustic scattering; Erbium-doped fiber amplifier; Fiber nonlinear optics; Nonlinear optics; Optical pumping; Optical scattering; Particle scattering; Raman scattering; Stimulated emission; Tutorial;
fLanguage
English
Publisher
ieee
Conference_Titel
Optical Fiber Communication Conference and Exhibit, 2002. OFC 2002
Print_ISBN
1-55752-701-6
Type
conf
DOI
10.1109/OFC.2002.1036493
Filename
1036493
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