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Erbium-doped glasses for fiber amplifiers at 1500 nm

Journal of Lightwave Technology · 1991 · Vol. 9(2) · pp. 234–250

Abstract

Material-dependent properties influencing the performance of fiber amplifiers are reviewed together with the available data for Er/sup 3+/. The major glass types potentially useful in this application are considered and compared to silica. The topics addressed include quenching processes and the solubility of rare-earth ions, transition strengths and bandwidths at the 1500-nm gain transition, and the characteristics at the 800-, 980-, and 1480-nm pump bands. Aluminum is shown to be an extremely useful codopant for silica, improving its ability to dissolve rare-earth ions and providing desirable spectroscopic properties for Er/sup 3+/. For some of the attributes considered, other glasses have advantages over Al silica, but only with respect to gain bandwidth and pumping performance at 800 nm is significantly better than expected from other glass compositions.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Glass properties and applicationsSolid State Laser TechnologiesLuminescence Properties of Advanced MaterialsErbiumMaterials scienceFiber amplifierOptical amplifierAmplifierDopingIonOptical fiberPhotoluminescenceBandwidth (computing)
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References
Low-noise erbium-doped fibre amplifier operating at 1.54μm
Electronics Letters · 1987 · 882 citations
Science and technology of laser glass
Journal of Non-Crystalline Solids · 1990 · 514 citations
Intensities of Crystal Spectra of Rare-Earth Ions
The Journal of Chemical Physics · 1962 · 7,348 citations
Optical Absorption Intensities of Rare-Earth Ions
Physical Review · 1962 · 7,911 citations
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Erbium-doped glasses for fiber amplifiers at 1500 nm · Scinovex