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Analytic and numeric modeling of diode laser pumped YB:YAG laser oscillators and amplifiers.

机译:二极管激光泵浦YB:YAG激光振荡器和放大器的解析模型和数值模型。

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摘要

A series of analytic and numeric models were developed and are presented, for quasi three level Yb:YAG laser oscillators and amplifiers. These models were applied to published experiments for Yb:YAG thin disk laser oscillators. Good agreement was obtained between our model and both earlier models and published experimental results. Unlike earlier models, ours are specifically suitable for modeling high power laser oscillators and amplifiers employing a strongly pumped Yb:YAG gain medium. We applied our analytic model to predict the upper limit of the performance of a multi thin disk Yb:YAG laser amplifier operating at 77 K neglecting thermal gradient induced lensing, birefringence and bending of the thin disk. Our modeling showed that the considered multi thin disk Yb:YAG laser amplifier system can generate laser output with very good beam quality while maintaining high extraction efficiency. Our analytic modeling results on the strongly pumped Yb:YAG thin disk was confirmed by our numeric model. As a zeroth order approximation, we applied the analytic model to evaluate the extraction efficiency of an Yb:YAG slab amplifier system. Our modeling showed that a slab shaped Yb:YAG gain medium is much more efficient than a disk shaped gain medium for the same volume of Yb:YAG crystal operating at the same temperature. A very efficient computer code was developed to model the laser dynamics in a slab shaped Yb:YAG gain medium with only about 10% error due to neglecting diffraction.
机译:针对准三级Yb:YAG激光振荡器和放大器,开发并提出了一系列解析模型和数值模型。这些模型已应用于已发布的Yb:YAG薄盘激光振荡器实验。我们的模型与早期模型和已发表的实验结果之间都取得了良好的共识。与早期的模型不同,我们的模型特别适合于建模使用强泵浦Yb:YAG增益介质的高功率激光振荡器和放大器。我们应用分析模型来预测在77 K下工作的多薄盘Yb:YAG激光放大器的性能上限,而忽略了热梯度引起的透镜弯曲,双折射和弯曲。我们的模型表明,经过考虑的多薄盘Yb:YAG激光放大器系统可以产生具有非常好的光束质量的激光输出,同时保持较高的提取效率。我们的数值模型证实了在强抽运的Yb:YAG薄盘上的分析建模结果。作为零阶近似,我们应用了解析模型来评估Yb:YAG平板放大器系统的提取效率。我们的模型表明,对于相同体积的Yb:YAG晶体在相同温度下工作,平板状Yb:YAG增益介质比圆盘形增益介质要有效得多。开发了一种非常有效的计算机代码,以模拟平板状Yb:YAG增益介质中的激光动力学,由于忽略了衍射,因此误差仅约10%。

著录项

  • 作者

    Shu, Hong.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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