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Updated: May 19, 2026

Low-cost Custom Fabrication and Mode-locked Operation of an All-normal-dispersion Femtosecond Fiber Laser for Multiphoton Microscopy
Published on: November 22, 2019
Impact of slow gain dynamics on soliton molecules in mode-locked fiber lasers
Alexandr Zaviyalov1, Philippe Grelu, Falk Lederer
1Institute of Condensed Matter Theory and Solid State Optics, Friedrich-Schiller-Universität Jena, Jena, Germany. aleksandr.zavyalov@uni‐jena.de
Abstract:
We theoretically demonstrate and experimentally confirm the major influence of gain dynamics on soliton molecules that self-assemble in mode-locked lasers. Both slow gain recovery and depletion play a pivotal role in the formation of chirped soliton molecules characterized by an increasing separation from leading to trailing pulses. These chirped molecules actually consist of many pulses and may be termed macromolecules. They are experimentally observed in a fiber laser and numerically modeled by an approach that properly includes the slow gain dynamics. Furthermore, it is shown that these processes stabilize soliton trains in fiber lasers by inhibiting internal oscillations.

