Presentation + Paper
12 March 2024 5.2 kW single-mode output power from a Yb 20/400 fiber with reduced thermo-optic coefficient
A. Rosales-García, R. Jensen, P. Kristensen, J. W. Nicholson, S. Ovtar, M. Mitrovic, K. Ingerslev, B. Edvold, S. Christensen, J. Pincha, D. DiGiovanni, B. Pálsdóttir
Author Affiliations +
Abstract
We report the performance of an LMA Yb-doped fiber, designed for increasing the transverse mode instability threshold and minimizing nonlinear effects in multi-kilowatt class fiber lasers, by reducing the thermo-optic coefficient of the fiber core, compared with that of standard aluminophosphosilicate Yb-doped fibers. A TMI-free 5.2 kW single-mode output power from a Yb 20/400 fiber with a 17.5 μm mode-field diameter was achieved in a broad bandwidth, co-pumped amplifier with 78% optical-to-optical efficiency, while a 4 kW signal output was attained in a 26 GHz linewidth amplifier. Negligible photodarkening loss was observed during 150 hour laser operation at 2 kW.
Conference Presentation
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
A. Rosales-García, R. Jensen, P. Kristensen, J. W. Nicholson, S. Ovtar, M. Mitrovic, K. Ingerslev, B. Edvold, S. Christensen, J. Pincha, D. DiGiovanni, and B. Pálsdóttir "5.2 kW single-mode output power from a Yb 20/400 fiber with reduced thermo-optic coefficient", Proc. SPIE 12865, Fiber Lasers XXI: Technology and Systems, 128650D (12 March 2024); https://doi.org/10.1117/12.3003763
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Ytterbium

Fiber lasers

Transverse mode instability

Absorption

Cladding

Thermal optics

Diffraction limit

RELATED CONTENT

VAD technology for laser fibers
Proceedings of SPIE (March 07 2019)
Benchmarking and measuring photodarkening in Yb doped fibers
Proceedings of SPIE (February 19 2009)
All-in-one 1236-nm Yb/Raman fiber laser
Proceedings of SPIE (February 22 2012)

Back to Top