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Numerical analysis of an end-pumped Yb:YAG thin disk laser with variation of a fractional thermal load

机译:随温度变化的端泵浦Yb:YAG薄盘激光器的数值分析

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摘要

An analytical model is developed to describe the dynamic behavior of an end-pumped Yb:YAG thin disk laser. Within the model, the rate equations, including the nonradiative relaxation process, are calculated taking into account the dependence of the fractional thermal load on the temperature of the thin disk crystal and intracavity laser intensity. The fractional thermal load is analyzed, or can be evaluated clearly, under lasing or nonlasing conditions. The stable temperature and fractional thermal load in a thin disk crystal for different radiative quantum efficiencies are obtained using the numerical iterative method. Furthermore, the dependence of the laser output intensity on variables such as pumping intensity, coupler reflectivity, radiative quantum efficiency, and the temperature of thin disk crystal is discussed.
机译:建立了一个分析模型来描述端抽式Yb:YAG薄盘激光器的动态行为。在模型中,考虑到部分热负荷对薄盘晶体温度和腔内激光强度的依赖性,计算了速率方程,包括非辐射弛豫过程。在激光或非激光条件下,可以分析分数热负荷,或者可以清楚地评估分数。使用数值迭代方法获得了不同辐射量子效率的薄盘晶体中的稳定温度和分数热负荷。此外,还讨论了激光输出强度对诸如泵浦强度,耦合器反射率,辐射量子效率和薄盘晶体温度之类的变量的依赖性。

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