首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Energy-transfer parameters in a Tm/Yb doped single mode silica fiber
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Energy-transfer parameters in a Tm/Yb doped single mode silica fiber

机译:Tm / Yb掺杂单模石英纤维中的能量传递参数

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摘要

Energy-transfer parameters in a thulium-ytterbium doped single mode silica fiber have been determined quantitatively for the first time, to our knowledge. The principal energy-transfer parameters, estimated from spectroscopic measurements and on the basis of a migration-assisted energy-transfer model, lead to design and optimization of the thulium-ytterbium doped fiber lasers and amplifiers. Linear dependence of the energytransfer probability on the product of co-dopant concentrations proves the accuracy of the implementation of the migration-assisted energy-transfer model. It has been found that the step-wise energy-transfer process as well as emission at wavelength ranges of 475, 800, and 2000 nm with pumping at 980 nm is strongly guided by the level of ytterbium concentration with respect to thulium. Thus the proportion has been optimized on the basis of emission at the mentioned wavelength ranges, and an amplified spontaneous emission experiment performed at 2000 nm shows good agreement with the optimization result.
机译:据我们所知,do- do掺杂的单模石英纤维中的能量转移参数已首次确定。通过光谱测量估算出的主要能量传递参数,并基于迁移辅助的能量传递模型,可以设计和优化掺y光纤激光器和放大器。能量转移概率与共掺杂物浓度乘积的线性相关性证明了迁移辅助能量转移模型实施的准确性。已经发现,逐步的能量转移过程以及在475 nm,800 nm和2000 nm波长范围内的发射以及在980 nm泵浦下的发射都受到by相对于th浓度的强烈影响。因此,已经基于在所述波长范围内的发射对比例进行了优化,并且在2000 nm处进行的放大的自发发射实验与优化结果显示出良好的一致性。

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