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A Cryogenically-Cooled High-Power Ho:YLF Regenerative Amplifier
Ghasemi, F.DESY* ; Cirmi, G.DESY* ; Thesinga, J.CFEL* ; Demirbas, U. ; Pergament, M.CFEL* ; Hartl, I.DESY* ; Kärtner, F.CFEL*DESY* ; Cankaya, H. (Corresponding author)Extern*DESY*
2025
Optica Publishing Group Washington, D.C.
2025CLEO 2025 : [Proceedings] - Optica Publishing Group Washington, D.C., 2025. - ISBN 978-1-957171-50-0 - doi:10.1364/CLEO_SI.2025.SS158_1
CLEO laser science to photonics applications, Long beach, CaliforniaLong beach, California, USA, 4 May 2025 - 9 May 20252025-05-042025-05-09
Optica Publishing Group Washington, D.C. paper SS158_1 (2025) [10.1364/CLEO_SI.2025.SS158_1]2025
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Please use a persistent id in citations: doi:10.1364/CLEO_SI.2025.SS158_1
Abstract: We present a high-power cryogenically cooled Ho:YLF regenerative amplifierachieving 30.6W average power, delivering 3.06mJ output energy at 10kHz, featuring an outputbeam quality factor better than 1.25.
Contributing Institute(s):
- Laser Forschung und Entwicklung (FS-LA)
- FS-CFEL-2 (CFEL-UFOX)
Research Program(s):
- 631 - Matter – Dynamics, Mechanisms and Control (POF4-631) (POF4-631)
- DFG project G:(GEPRIS)453615464 - Dielektrischer Laserbeschleuniger im mittleren Infrarotbereich (453615464) (453615464)
Experiment(s):
- Accelerator Research Experiment at SINBAD