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Simulations of the lasing properties of a thin-disk laser combining high-output powers with good beam quality

机译:结合高输出功率和良好光束质量的薄盘激光器的激光特性仿真

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Abstract: A model to predict the optical efficiency and beam quality obtained from a diode pumped high-power thin disk laser is presented. The laser consists of a linear resonator with the quasi-three-level laser active material Yb:YAG placed as a thin disk on a cooling finger. The laser crystal is pumped by a near flat-top pump beam profile in a multiple pass configuration. Cw-output powers of 255 W at pump powers of 519 W have been achieved experimentally. Within the model the temperature distribution inside the crystal is calculated, taking into account the mutual dependence of temperature (and thus level population) and pump light absorption. The pump beam power distribution is modeled by Monte-Carlo-ray-tracing. The resonator is simulated by self-consistently circulating the power distribution within the resonator via transformations into a suitable mode system and back, using simple matrix multiplication. Thermal lensing due to thermo- optical and mechanical deformations is considered, using the results of finite-element-modeling. The resulting optical efficiency and beam quality have been calculated. The dependence on variables like temperature, dimensions of the pump beam source, number of pump beam passes and crystal thickness is discussed. !11
机译:摘要:提出了一个预测从二极管泵浦大功率薄盘激光器获得的光效率和光束质量的模型。激光器由线性谐振器组成,准三能级激光活性材料Yb:YAG作为薄盘放置在冷却指上。激光晶体通过多通道配置的近平顶泵浦光束轮廓进行泵浦。在519 W的泵浦功率下,已通过实验获得255 W的Cw输出功率。在模型中,考虑到温度(以及能级数)和泵浦光吸收的相互依赖性,计算了晶体内部的温度分布。泵浦光束功率分布是通过蒙特卡洛射线追踪建模的。通过使用简单的矩阵乘法,通过转换为合适的模式系统并返回来自洽地在谐振器内循环功率分布,从而对谐振器进行了仿真。使用有限元建模的结果,考虑了由于热光学和机械变形引起的热透镜。已计算出最终的光学效率和光束质量。讨论了对变量的依赖性,例如温度,泵浦束源的尺寸,泵浦束通过的次数和晶体厚度。 !11

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