Nonlinear dynamics in breathing-soliton lasers

Abstract

We review recent advances in the study of nonlinear dynamics in mode-locked fiber lasers operating in the breathing (pulsating) soliton regime. Leveraging advanced diagnostics and control strategies—including genetic algorithms—we uncover a rich spectrum of dynamical behaviours, including frequency-locked breathers, fractal Farey hierarchies, Arnold tongues with anomalous features, and breather molecular complexes. We also identify a novel route to chaos via modulated subharmonic states. These findings underscore the utility of fiber lasers as model systems for exploring complex dissipative dynamics, offering new opportunities for ultrafast laser control and fundamental studies in nonlinear science

Publication DOI: https://doi.org/10.1080/23746149.2025.2580628
Divisions: College of Engineering & Physical Sciences > Aston Institute of Photonics Technology (AIPT)
Aston University (General)
Funding Information: We acknowledge support from the Innovation Program for Quantum Science and Technology (2023ZD0301000); the National Natural Science Fund of China (12434018, 62475073, 1243000542, 11621404, 11561121003, 11727812, 61775059, 12074122, 62405090, 62035005, 117
Additional Information: Copyright © 2025 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The terms on which this article has been published allow the posting of the Accepted Manuscript in a repository by the author(s) or with their consent.
Uncontrolled Keywords: Fibre lasers; breathing (pulsating) solitons; nonlinear dissipative structures; synchronization; chaos; smart lasers
Publication ISSN: 2374-6149
Last Modified: 27 Nov 2025 11:56
Date Deposited: 19 Nov 2025 10:09
Full Text Link:
Related URLs: https://www.tan ... 49.2025.2580628 (Publisher URL)
https://arxiv.o ... /abs/2510.14038 (Publisher URL)
PURE Output Type: Article
Published Date: 2025-12-01
Published Online Date: 2025-11-16
Accepted Date: 2025-10-21
Authors: Peng, Junsong
Wu, Xiuqi
Kang, Huiyu
Zhou, Anran
Zhang, Ying
Zeng, Heping
Finot, Christophe
Boscolo, Sonia (ORCID Profile 0000-0001-5388-2893)

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