首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Accurate efficiency evaluation of energy-transfer processes in phosphosilicate Er3+-Yb3+-codoped fibers
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Accurate efficiency evaluation of energy-transfer processes in phosphosilicate Er3+-Yb3+-codoped fibers

机译:磷硅酸盐掺Er3 + -Yb3 +纤维中能量转移过程的准确效率评估

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摘要

A new approach for the prediction of energy-transfer efficiencies in codoped Er-Yb double-clad fiber (EYDCF) is presented. Ab initio calculations have been performed on the basis of migration-assisted energy-transfer models. The two main Yb3+-to-Er3+ energy transfers as well as the Er3+ cooperative upconversion were theoretically estimated, and the results indicate that the secondary energy-transfer parameter is more efficient than the upconversion process. Theoretical calculations were found to be consistent with experimental energy-transfer parameters recorded in various fiber samples. We show that the first Yb3+-to-Er3+ energy-transfer parameter that is needed in all modelings based on rate equations can be calculated by use of a simple relation. Our approach also permits the prediction of the laser efficiency of EYDCFs, and a comparison of measured and calculated maximum laser slope efficiency shows a good agreement. (c) 2006 Optical Society of America.
机译:提出了一种新的方法来预测共掺Er-Yb双包层光纤(EYDCF)的能量传输效率。从头算算是在迁移辅助的能量转移模型的基础上进行的。从理论上估计了两个主要的Yb3 +到Er3 +的能量转移以及Er3 +协同上转换,结果表明,次级能量转移参数比上转换过程更有效。发现理论计算与记录在各种纤维样品中的实验能量传递参数一致。我们表明,可以使用简单关系来计算基于速率方程的所有模型中所需的第一个Yb3 +至Er3 +能量转移参数。我们的方法还可以预测EYDCF的激光效率,并且对测得的和计算出的最大激光斜率效率进行比较可以得出很好的一致性。 (c)2006年美国眼镜学会。

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