首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Numerical analysis of Ytterbium-doped double-clad fiber lasers based on the temperature-dependent rate equation
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Numerical analysis of Ytterbium-doped double-clad fiber lasers based on the temperature-dependent rate equation

机译:基于温度相关速率方程的掺Y双包层光纤激光器的数值分析

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摘要

The effects of temperature on the output power and optimal conditions of Ytterbium-doped double-cladding fiber lasers (YDDFLs) are discussed. Temperature-dependent rate equations for YDDFLs based on Boltzmann distribution are built in two-end pump model. The results show that the output power and the slope efficiency decrease with the increase of temperature. The increase of pump power results in that the effect of the temperature on the output performance increases, and the fiber length is a factor that the effect of the temperature depends on really. Moreover we combine the heat distribution formula with the rate equations and compare the numerical results considering with that not considering the temperature-dependence inside laser cavity, the effect of temperature can be ignored only when the pump power is lower, and the optimal fiber length becomes longer when considering the temperature-dependence.
机译:讨论了温度对掺Y双包层光纤激光器(YDDFLs)输出功率和最佳条件的影响。在两端泵模型中建立了基于玻尔兹曼分布的YDDFL的温度相关速率方程。结果表明,输出功率和斜率效率随着温度的升高而降低。泵浦功率的增加导致温度对输出性能的影响增加,而光纤长度是温度影响真正依赖的因素。此外,我们将热分布公式与速率方程式相结合,并在不考虑激光腔内部温度依赖性的情况下比较了数值结果,只有在泵浦功率较低时才可以忽略温度的影响,并且最佳光纤长度变为考虑温度依赖性时更长。

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