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Gain performances of 980 nm-pumped erbium-doped fiber amplifiers

Gain performances of 980 nm-pumped erbium-doped fiber amplifiers
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摘要 Through the introduction of the overlapping factors between the light (pump and signal) intensities and the erbium doping distributions inside the fiber core, analytical solutions of homogeneously broadened two-level systems for erbium-doped fiber amplifiers pumped in the 980 nm absorption band have been derived from EDFA rate equations and light propagation equations in steady-state case. By using these deduced expressions and numerical simulated methods, important features characterizing the amplifiers such as gain, pump threshold power, optimum fiber length have been analyzed and discussed. Through the introduction of the overlapping factors between the light (pump and signal) intensities and the erbium doping distributions inside the fiber core, analytical solutions of homogeneously broadened two-level systems for erbium-doped fiber amplifiers pumped in the 980 nm absorption band have been derived from EDFA rate equations and light propagation equations in steady-state case. By using these deduced expressions and numerical simulated methods, important features characterizing the amplifiers such as gain, pump threshold power, optimum fiber length have been analyzed and discussed.
出处 《Science China Mathematics》 SCIE 1999年第3期286-292,共7页 中国科学:数学(英文版)
基金 Project supported by the Chinese Academy of Sciences
关键词 ERBIUM-DOPED fiber AMPLIFIER rate EQUATION gain. erbium-doped fiber amplifier rate equation gain
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