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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Thermal lensing and aberrations modeling of a Brewster cut end pumped laser rod by BEM and optimization of the pumping-beam waist
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Thermal lensing and aberrations modeling of a Brewster cut end pumped laser rod by BEM and optimization of the pumping-beam waist

机译:BEM对布鲁斯特切端泵浦激光棒的热透镜和像差建模,以及对抽运束腰的优化

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摘要

In this article, the temperature distribution in a volume of a Ti:Sapphire laser rod with a Brewster cut in a steady state has been calculated using Boundary Element Method (BEM). High speed and superior accuracy are among the dominant characteristics of this method. Calculating the temperature distribution and refraction index, we calculated the applied phase shift on the transmitted beam of the rod, obtained dioptric power of the rod in tangential and sagittal planes, and investigated its variation according to the increase in the power and spot size of the pump beam. Afterwards, a self-consistent algorithm was used to optimize the spot size of the pump beam under condition of maximum overlap between pump and laser beam. Finally, in order to investigate the accuracy of the calculation, the temperature distribution was calculated using ANSYS software and a very good accommodation was observed between the two results. The only difference was that the calculation process in ANSYS software was four times longer than that using BEM.
机译:在本文中,已使用边界元方法(BEM)计算了在稳态下经过Brewster切割的Ti:Sapphire激光棒的体积中的温度分布。高速和高精度是该方法的主要特征。计算温度分布和折射率,我们计算了棒的透射光束上施加的相移,获得了棒在切向和矢状面的屈光度,并根据其功率和光斑尺寸的增加来研究其变化。泵浦光束。然后,在泵浦和激光束最大重叠的情况下,使用自洽算法优化泵浦束的光斑尺寸。最后,为了研究计算的准确性,使用ANSYS软件计算了温度分布,并在两个结果之间观察到了很好的适应性。唯一的区别是ANSYS软件中的计算过程是使用BEM的过程的四倍。

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