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Theoretical description of transient stimulated Raman scattering in optical fibers

IEEE Journal of Quantum Electronics · 1989 · Vol. 25(12) · pp. 2665–2673
K.J. BlowDavid Wood

Abstract

The authors derive a single-wave equation which describes transient stimulated Raman scattering in optical fibers. The equation is valid for forward traveling waves whose bandwidths are less than approximately=1/3 the carrier frequency. It correctly conserves a classical photon number and not the total optical energy as is appropriate for Raman scattering problems. From this equation, the authors derive a formula for the small-signal gain spectrum which includes the effects of Raman scattering, four-wave mixing, and modulational instabilities. Examples of numerical integrations are given which show the generation of short soliton pulses from the nonlinear evolution of a noise band around a continuous wave pump.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Optical Network TechnologiesAdvanced Fiber Laser TechnologiesPhotonic Crystal and Fiber OpticsRaman scatteringPhysicsRaman spectroscopyNonlinear opticsSolitonOpticsFour-wave mixingTransient (computer programming)ScatteringOptical fiber
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References
Theory of the soliton self-frequency shift
Optics Letters · 1986 · 1,114 citations
Nonlinear pulse propagation in a monomode dielectric guide
IEEE Journal of Quantum Electronics · 1987 · 928 citations
Self-phase-modulation in silica optical fibers
Physical review. A, General physics · 1978 · 867 citations
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