arXiv · 1806.10796
Laser-controlled adaptive optic for beam quality enhancement in a multipass thin disk amplifier
Abstract
We devise a laser-controlled adaptive optical element which operates intracavity under high intensity radiation. This element substitutes a conventional mechanically deformable mirror and is free of critical heat-sensitive components and electronics. The deformation mechanism is based on the projection of a CW control laser onto a specially designed mirror. Mounted to a water-cooled heat sink, the mirror can handle laser radiation beyond 3 MW/cm^2. The properties of the adaptive optical element including the maximum correctable wavefront pitch of 800 nm are discussed. The successful implementation in a multipass thin disk amplifier is presented. An improvement of the beam quality by a factor of three is achieved. We identify measures to enhance the performance of the adaptive optic towards efficient operation in a high-power laser system.
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Richard Lange, Daniel Kolbe. 2018-06-28. Laser-controlled adaptive optic for beam quality enhancement in a multipass thin disk amplifier. https://doi.org/10.1364/ol.43.003453
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