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Influence of thermal deformations of the output windows of high-power laser systems on beam characteristics

机译:大功率激光系统输出窗口的热变形对光束特性的影响

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摘要

By using the well-known Green's function methods, we study the three-dimensional temperature distributions and thermal deformations of the output windows of unstable optical resonators induced by an incident annular laser beam. Some expressions and theoretical profiles of the temperature distributions and thermal deformations as functions of the radius and of the thickness of optical windows are obtained. Moreover, the influence of the thermal deformations of sapphire, silica, and silicon windows within unstable optical resonators on the Strehl ratio and on the far-field laser intensity distribution is also discussed. Under conditions of 50-kW intense laser irradiation during 5 s, the maximum thermal deformation in sapphire, silica, and silicon substrates is 1.993, 0.393, and 6.251 μm, respectively. Under the same conditions the Strehl ratio of sapphire is higher than that of silica.
机译:通过使用众所周知的格林函数方法,我们研究了入射环形激光束引起的不稳定光学谐振器输出窗口的三维温度分布和热变形。获得了温度分布和热变形随半径和光学窗口厚度变化的一些表达式和理论轮廓。此外,还讨论了不稳定光学谐振器内的蓝宝石,二氧化硅和硅窗口的热变形对斯特列尔比和远场激光强度分布的影响。在5秒钟内以50 kW的强激光照射的条件下,蓝宝石,二氧化硅和硅衬底的最大热变形分别为1.993、0.393和6.251μm。在相同条件下,蓝宝石的斯特列尔比高于二氧化硅。

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