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49-core rod-type ytterbium-doped multicore fiber for high power operation
Klenke, A. (Corresponding author)GSI* ; Bahri, M. ; Steinkopff, A. ; Aleshire, C. ; Jauregui, C. ; Nold, J. ; Haarlammert, N. ; Schreiber, T. ; Limpert, J.HIJ* ; Jollivet, C. (Editor) ; Supradeepa, V. R. (Editor)
2023
SPIE
2023Fiber Lasers XX: Technology and Systems : [Proceedings] - SPIE, 2023. - ISBN 97815106590569781510659063 - doi:10.1117/12.2649986
Fiber Lasers XX: Technology and Systems, San FranciscoSan Francisco, United States, 28 Jan 2023 - 3 Feb 20232023-01-282023-02-03
SPIE (2023) [10.1117/12.2649986]2023
Please use a persistent id in citations: doi:10.1117/12.2649986
Note: Supported by BMBF under grant # 13N15244. Supported by Free State of Thuringia and ESF under grant # 2018 FGR 0099 and 2017 FGR 0074.
Contributing Institute(s):
- HIJ / HL (JHL)
Research Program(s):
- 631 - Matter – Dynamics, Mechanisms and Control (POF4-631) (POF4-631)
- SALT - High-Flux Synchrotron Alternatives Driven by Powerful Long-Wavelength Fiber Lasers (835306) (835306)
- GRK 2101 - GRK 2101: Geführtes Licht, dicht gepackt: neue Konzepte, Komponenten und Anwendungen (259607349) (259607349)
- DFG project 416342637 - Kontrolle von transversale Modenwechselwirkung in hoch-Leistung Faserlasersysteme (416342637) (416342637)
Experiment(s):
- External experiment at external facility/ no experiment at GSI (other)
Appears in the scientific report
2023