Presentation + Paper
8 March 2023 The impact of core size scaling on the transverse mode instability threshold in fiber laser amplifiers
Author Affiliations +
Proceedings Volume 12400, Fiber Lasers XX: Technology and Systems; 124000W (2023) https://doi.org/10.1117/12.2651074
Event: SPIE LASE, 2023, San Francisco, California, United States
Abstract
Both transverse mode instability (TMI) and non-linear effects hinder the power scaling in fiber laser amplifiers with a diffraction-limited beam profile. In this context core size scaling is a key design parameter to counteract nonlinear effects and, therefore, it is of outmost importance to understand the impact of this parameter on the TMI threshold. In this work we present the first systematic experimental studies that investigate the impact of core size scaling on TMI characteristics. In this study, the unique characteristics of large pitch photonic crystal fibers is exploited to ensure comparability between fibers with different core sizes. This has been done by manufacturing a set of test fibers (Ytterbium-doped LPFs) with different core sizes which maintain their modal characteristics when operated under the same conditions. Furthermore, our experiments reveal a TMI power threshold of 570 W, the highest ever reported in a rod-type fiber with a very large core diameter.
Conference Presentation
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Sobhy Kholaif, Mehran Bahri, Arno Klenke, Cesar Jauregui, Johannes Nold, Nicoletta Haarlammert, Stefan Kuhn, Thomas Schreiber, and Jens Limpert "The impact of core size scaling on the transverse mode instability threshold in fiber laser amplifiers", Proc. SPIE 12400, Fiber Lasers XX: Technology and Systems, 124000W (8 March 2023); https://doi.org/10.1117/12.2651074
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KEYWORDS
Transverse mode instability

Fiber lasers

Beam diameter

Design and modelling

Laser damage threshold

Photonic crystal fibers

Manufacturing

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