Turbulent dynamics of an incoherently pumped passive optical fiber cavity: Quasisolitons, dispersive waves, and extreme events

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TitreTurbulent dynamics of an incoherently pumped passive optical fiber cavity: Quasisolitons, dispersive waves, and extreme events
Type de publicationJournal Article
Year of Publication2015
AuteursConforti M., Mussot A., Fatome J., Picozzi A., Pitois S., Finot C., Haelterman M., Kibler B., Michel C., Millot G.
JournalPHYSICAL REVIEW A
Volume91
Pagination023823
Date PublishedFEB 18
Type of ArticleArticle
ISSN1050-2947
Résumé

We study numerically and experimentally the dynamics of an incoherently pumped passive optical fiber ring cavity nearby the zero-dispersion wavelength of the fiber. We show that the cavity exhibits a quasisoliton turbulence dynamics, whose properties are controlled by the degree of coherence of the injected pump wave: As the coherence of the pump is degraded, the cavity exhibits a transition from the quasisoliton condensation regime toward the weakly nonlinear turbulent regime characterized by short-lived rogue wave events. This behavior is reminiscent of the corresponding dynamics obtained in the purely conservative (Hamiltonian) problem. We report experimental results of an all-integrated incoherently pumped fiber cavity that provide some spectral and temporal complementary signatures of the processes predicted numerically.

DOI10.1103/PhysRevA.91.023823