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The overall phase shift and lens effect calculation using Gaussian boundary conditions and paraxial ray approximation for an end-pumped solid-state laser

机译:使用高斯边界条件和近轴射线近似法对端泵浦固态激光器进行整体相移和透镜效应计算

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In this work, the inhomogeneous equation of heat conduction was exactly solved by applying inhomogeneous boundary conditions for laser crystals of aspect ratio=1 (aspect ratio=radius of the laser rod/length of the laser rod). We have shown that the paraxial ray approximation leads the solution to be a function of e?‘?2, that is, the approximation is equivalent to a situation in which a homogeneous pump source is used. The solution was then used to derive expressions for the overall phase shift, focal length of the thermal lens and the end effect induced curvature of the end face. The expressions were then applied to Nd:YAG laser medium. The result shows a meaningful correction of the order of 0.001 cm to the focal length of Nd:YAG rod for 3 W source power and beam waist of 100 e???m.
机译:在这项工作中,通过对纵横比= 1(纵横比=激光棒的半径/激光棒的长度)的激光晶体应用不均匀的边界条件,可以精确求解导热的不均匀方程。我们已经表明,近轴射线逼近使解成为e?2的函数,也就是说,该逼近等效于使用均匀泵浦源的情况。然后,该解决方案用于得出总相移,热透镜的焦距以及端效应引起的端面曲率的表达式。然后将表达式应用于Nd:YAG激光介质。结果表明,对于3W的源功率和100e·m的束腰,对Nd:YAG棒的焦距进行了0.001cm量级的有意义的校正。

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