Entwurf deformierbarer Spiegel für den Einsatz in Hochleistungslasern
Author:
Affiliation:
1. 9149 Universität Stuttgart , Institut für Systemdynamik , Waldburgstr. 17/19 , Stuttgart , Deutschland
2. 9149 Universität Stuttgart , Institut für Strahlwerkzeuge , Pfaffenwaldring 43 , Stuttgart , Deutschland
Abstract
Funder
Deutsche Forschungsgemeinschaft
Publisher
Walter de Gruyter GmbH
Subject
Electrical and Electronic Engineering,Instrumentation
Link
https://www.degruyter.com/document/doi/10.1515/teme-2019-0005/pdf
Reference26 articles.
1. W. Koechner. Solid-state laser engineering. Springer Verlag, 2013.
2. A. Giesen and J. Speiser. Fifteen years of work on thin-disk lasers: results and scaling laws. IEEE Journal of Selected Topics in Quantum Electronics, 13, 2007.
3. S. Piehler. Resonatorinterne Kompensation thermisch induzierter Wellenfrontstörungen in hochbrillanten Scheibenlasern, volume 87. Herbert Utz Verlag, 2017.
4. B. Weichelt, A. Voss, M. Abdou Ahmed, and T. Graf. Enhanced performance of thin-disk lasers by pumping into the zero-phonon line. Optics letters, 37, 2012.
5. H. Lück, A. Freise, S. Gossler, S. Hild, K. Kawabe, and K. Danzmann. Thermal correction of the radii of curvature of mirrors for geo 600. Classical and Quantum Gravity, 21, 2004.
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1. Intra-Cavity Control of an Adaptive Thin-Disk Laser with Multiple Pneumatically Actuated Deformable Mirrors;2024 American Control Conference (ACC);2024-07-10
2. Closed-loop controlled compensation of thermal lensing in high-power thin-disk lasers using spherically deformable mirrors;Laser Physics Letters;2021-01-13
3. On compensating thermal lensing in high-power lasers using intra-cavity deformable mirrors;IFAC-PapersOnLine;2019
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