首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Secondary energy transfer and nonparticipatory Yb3+ ions in Er3+-Yb3+ high-power amplifier fibers
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Secondary energy transfer and nonparticipatory Yb3+ ions in Er3+-Yb3+ high-power amplifier fibers

机译:Er3 + -Yb3 +大功率放大器光纤中的二次能量转移和非参与Yb3 +离子

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摘要

The energy exchange processes within Er3+-Yb3+-codopedsilica fibers manufactured for high-power optical amplifiers are investigated through luminescent decay measurements and rate-equation modeling. The Er3+ and Yb3+ luminescence, as functions of pump power, exhibit an unquenchable Yb3+ to Er3+ cooperative energy transfer (CET) that does not subside with saturation of the Er3+ inversion. Consistent with the experimental results is the occurrence of secondary energy transfer to excited E3+ ions in their metastable I-4(13/2) state. The transfer coefficient for this secondary I-4(13/2) CET is determined to be of the same order of magnitude as that for the initial Yb3+ to ground-state Er3+ CET. Additionally, the decay measurements and modeling indicate that a fraction of Yb3+ ions does not participate in energy exchange with the Er3+. These nonparticipatory Yb3+ ions amounted to similar to15% of the total Yb3+ concentration and could constitute Yb3+ clusters. Both secondary CET and nonparticipatory Yb3+. will lower Er3+-Yb3+ fiber amplifier efficiencies. (C) 2004 Optical Society of America.
机译:通过发光衰减测量和速率方程模型研究了为大功率光放大器制造的Er3 + -Yb3 +共掺杂石英光纤中的能量交换过程。作为泵浦功率的函数,Er3 +和Yb3 +发光表现出不可抑制的Yb3 +到Er3 +的协同能量转移(CET),并且不会因Er3 +反转的饱和而减弱。与实验结果一致的是发生二次能量转移到处于亚稳态I-4(13/2)状态的激发E3 +离子。确定该次级I-4(13/2)CET的传输系数与初始Yb3 +到基态Er3 + CET的传输系数处于相同的数量级。此外,衰减测量和建模表明,一部分Yb3 +离子不参与与Er3 +的能量交换。这些非参与的Yb3 +离子占Yb3 +总浓度的15%,并可能构成Yb3 +簇。中学英语四级考试和非参与式Yb3 +。会降低Er3 + -Yb3 +光纤放大器的效率。 (C)2004年美国眼镜学会。

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