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Saliya Coulibaly

Researcher at Lille University of Science and Technology

Publications -  75
Citations -  1155

Saliya Coulibaly is an academic researcher from Lille University of Science and Technology. The author has contributed to research in topics: Nonlinear system & Dissipative system. The author has an hindex of 17, co-authored 70 publications receiving 957 citations. Previous affiliations of Saliya Coulibaly include Centre national de la recherche scientifique & University of Chile.

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Roadmap on optical rogue waves and extreme events

TL;DR: The concept of optical rogue wave was introduced by Solli et al. as discussed by the authors, who defined it as "an optical pulse whose amplitude or intensity is much higher than that of the surrounding pulses".
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Spatiotemporal Chaos Induces Extreme Events in an Extended Microcavity Laser.

TL;DR: This work has identified parameter regions where extreme events are encountered and established the origin of this dynamics in the emergence of deterministic spatiotemporal chaos, through the correspondence between the proportion of extreme events and the dimension of the strange attractor.
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Chimera-type states induced by local coupling.

TL;DR: This work investigates the existence, stability properties, and bifurcation diagram of chimera-type states in a system with local coupling without different time scales, and identifies the required attributes to observe these states: local coupling and bistability between a stationary and an oscillatory state close to a homoclinic b ifurcation.
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Drift of dark cavity solitons in a photonic-crystal fiber resonator

TL;DR: In this paper, a photonic crystal fiber resonator pumped by a coherent injected beam is considered, and the authors show that it exhibits a motion with a constant velocity induced by a broken reflection symmetry mediated by a third-order dispersion.
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Localized states beyond the asymptotic parametrically driven amplitude equation.

TL;DR: A family of localized states which asymptotically connect a uniform oscillatory state in the magnetization of an easy-plane ferromagnetic spin chain when an oscillatory magnetic field is applied and in a parametrically driven damped pendula chain are studied.