4.7 Article

Spatiotemporal dissipative soliton resonances in multimode fiber lasers

期刊

CHAOS SOLITONS & FRACTALS
卷 174, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chaos.2023.113865

关键词

Nonlinear dynamics; Spatiotemporal mode-locking; Dissipative soliton resonance; Multimode fiber laser

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This paper enriches the study of spatiotemporal mode-locking in multimode fiber lasers by combining it with dissipative soliton resonances, which are characterized by large pulse energy in single mode fiber lasers and generated by the reverse saturable absorption effect from real saturable absorbers. The locking of dissipative soliton resonances in different transverse modes is expected to raise the energy limit further, reaching about twice the maximum single-mode energy in the results. The properties of spatiotemporal dissipative soliton resonances, including evolution and transformation, are investigated by tuning parameters of the multimode fiber laser. These findings may open up new possibilities for high-power and spatiotemporally engineered coherent light fields in laser dynamics and nonlinear optics.
Spatiotemporal mode-locking in multimode fiber lasers is intriguing for the complex nonlinear dynamics and the increase of theoretical energy limit. In this paper, we enrich spatiotemporal mode-locking with dissipative soliton resonances, a kind of solitons which is characterized by large pulse energy in single mode fiber lasers, and demonstrate their emergence in multimode fiber lasers by employing the reverse saturable absorption effect from real saturable absorbers. The spatiotemporal dissipative soliton resonances are expected to raise the energy limit further by the locking of dissipative soliton resonances in different transverse modes, whose energy is about twice the maximum single-mode energy in our results. Moreover, properties of spatiotemporal dissipative soliton resonances are investigated by tailoring parameters of the multimode fiber laser, where evolution and transformation of the proposed pulses including shaping and broadening are disclosed. The spatiotemporal dissipative soliton resonances in multimode fiber lasers may open up new avenue for high-power and spatiotemporally engineered coherent light fields in laser dynamics and nonlinear optics.

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