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Power scaling of fundamental-mode thin-disk lasers using intracavity deformable mirrors

机译:使用腔内可变形镜的基本模式薄盘激光器的功率缩放

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摘要

Since its first demonstration almost two decades ago, the concept of the thin-disk laser has proven its excellent power scaling properties, enabling output powers in the multi-kW-range at decent beam quality. However, power scalability in fundamental-mode operation is limited by severe diffraction losses arising from thermally induced aspherical wavefront distortions in the pumped laser crystal. In order to compensate for these wavefront distortions, we have developed a deformable mirror concept based on pneumatic actuation, providing a step-like surface deformation with adaptable magnitude. Using one of these mirrors, we have achieved output powers as high as 815 W at nearly diffraction-limited beam quality (M~2 < 1.4) from a single disk, which is--to the best of the authors' knowledge--the highest output power at this beam quality demonstrated so far.
机译:自从大约二十年前的首次演示以来,薄盘激光器的概念已经证明了其出色的功率缩放特性,可在相当好的光束质量下实现几千瓦范围内的输出功率。但是,由于泵浦激光晶体中由热引起的非球面波阵面畸变引起的严重衍射损耗,限制了基本模式操作中的功率可扩展性。为了补偿这些波前畸变,我们开发了一种基于气动的可变形反射镜概念,可提供幅度适中的阶梯状表面变形。使用这些反射镜之一,我们从单个磁盘上获得了近衍射极限光束质量(M〜2 <1.4)的高达815 W的输出功率,据作者所知-到目前为止,在这种光束质量下显示出最高的输出功率。

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