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Modeling erbium-doped fiber amplifiers

Journal of Lightwave Technology · 1991 · Vol. 9(2) · pp. 271–283
C.R. GilesE. Desurvire

Abstract

Erbium-doped fiber amplifiers are modeled using the propagation and rate equations of a homogeneous two-level laser medium. Numerical methods are used to analyze the effects of optical modes and erbium confinement on amplifier performance, and to calculate both the gain and amplified spontaneous emission (ASE) spectra. Fibers with confined erbium doping are completely characterized from easily measured parameters: the ratio of the linear ion density to fluorescence lifetime, and the absorption of gain spectra. Analytical techniques then allow accurate evaluation of gain, saturation, and noise in low-gain amplifiers (G<or approximately=20 dB).<<ETX>>

Solid State Laser TechnologiesSpectroscopy and Laser ApplicationsGlass properties and applicationsAmplified spontaneous emissionErbiumOptical amplifierMaterials scienceAmplifierOpticsRate equationNoise figureSpectral hole burningActive laser medium
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References
Low-noise erbium-doped fibre amplifier operating at 1.54μm
Electronics Letters · 1987 · 882 citations
Weakly Guiding Fibers
Applied Optics · 1971 · 1,450 citations
Modeling of gain in erbium-doped fiber amplifiers
IEEE Photonics Technology Letters · 1990 · 297 citations
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