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Wavelength shifting concept for high-power femtosecond lasers
Balla, P. (Corresponding author)Extern* ; Tünnermann, H. ; Salman, S. H. ; Fan, M. ; Mecejus, M. ; Hartl, I. ; Heyl, C. M.
2022
Optica Publishing Group Washington, D.C.
[Washington, D.C., USA]
ISBN: 978-1-957171-05-0
2022[Ebook] CLEO: Science and Innovations : part of CLEO: 2022 : 15-20 May 2022, San Jose, California, United States / Optica Publishing Group (formerly OSA , [Washington, D.C., USA] : Optica Publishing Group, [2022],
CLEO: Science and Innovations, San JoseSan Jose, California, 15 May 2022 - 20 May 20222022-05-152022-05-20
[Washington, D.C., USA] : Optica Publishing Group Washington, D.C., Technical digest series / Optica Publishing Group 1 pp. (2022) [10.1364/CLEO_SI.2022.SM3O.1]2022
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Please use a persistent id in citations: doi:10.1364/CLEO_SI.2022.SM3O.1
Abstract: We introduce a new concept to frequency shift a high-power laser using a waveshaper and a multi pass cell. We demonstrate this concept by experimentally frequency shifting a 200 fs laser from 1030 nm to 1000 nm.
Note: "Also known as: CLEO: Science and Innovations, Conference on Lasers and Electro-Optics" - Einstiegsseite der Ressource; Literaturangaben; "Co-located meetings: CLEO: Applications and Technology, CLEO: QELS_Fundamental Science" - Einstiegsseite der Ressource;
Contributing Institute(s):
- Laser Forschung und Entwicklung (FS-LA)
- externe Institute im Bereich Photon Science (HI Jena)
Research Program(s):
- 631 - Matter – Dynamics, Mechanisms and Control (POF4-631) (POF4-631)
Experiment(s):
- No specific instrument
Appears in the scientific report
2022