Title :
A method for progressive optimization of pump power and wavelengths for Raman amplification
Author :
Muktoyuk, Mark ; Gray, Stuart ; Evans, Alan
Author_Institution :
Corning Inc., NY, USA
fDate :
5/1/2004 12:00:00 AM
Abstract :
We present a method for progressive optimization of pump power and wavelengths for Raman amplification, which allows for selective compensation of the relevant nonlinear interactions. This method first allows for a rapid one-step assessment of gain performance for a given set of wavelengths without determining pump powers in a novel approach which completely avoids the numeric solution of the Raman equations, thereby enabling ideal performance prediction while significantly reducing computational effort. The method then provides a technique to selectively compensate for pump-pump, pump-signal, and amplified signal-signal interactions, enabling one to control how much computational effort is expended determining pump powers based on the level of accuracy desired, which varies widely in practice. Lastly, the method is independent of solution techniques for the Raman equations, thereby eliminating the need to recast the Raman equations with separate, typically restrictive assumptions (such as ignoring amplified spontaneous emission and Rayleigh backscattering).
Keywords :
Raman lasers; nonlinear optics; optical fibre amplifiers; optical pumping; optimisation; Raman amplification; Raman equations; amplified signal-signal interaction; gain performance; optical Raman amplifiers; pump power optimization; pump-pump interaction; pump-signal interaction; relative nonlinear interactions; selective compensation; wavelength optimization; Backscatter; Noise figure; Nonlinear equations; Optimization methods; Performance gain; Power amplifiers; Power generation economics; Spontaneous emission; Steady-state; Stimulated emission;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2004.826040