Pattern Formation by Traveling Localized Modes in Two-Dimensional Dissipative Media with Lattice Potentials - Archive ouverte HAL Accéder directement au contenu
Chapitre D'ouvrage Année : 2015

Pattern Formation by Traveling Localized Modes in Two-Dimensional Dissipative Media with Lattice Potentials

Valentin Besse
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Hervé Leblond
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Juan Archilla
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Victor Sanchez-Morcillo
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Luis García-Raffi
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Résumé

We analyze pattern-formation scenarios in the two-dimensional (2D) complex Ginzburg-Landau (GL) equation with the cubic-quintic nonlinearity and a cellular potential. The equation models laser cavities with built-in gratings, which stabilize 2D patterns. The pattern-building process is initiated by kicking a compound mode, in the form of a dipole, quadrupole, or vortex which is composed of four local peaks. The hopping motion of the kicked mode through the cellular structure leads to the generation of various extended patterns pinned by the structure. In the ring-shaped system, the persisting freely moving dipole hits the stationary pattern from the opposite side, giving rise to several dynamical regimes, including periodic elastic collisions, i.e., persistent cycles of elastic collisions between the moving and quiescent dissipative solitons, and transient regimes featuring several collisions which end up by absorption of one soliton by the other. Another noteworthy result is transformation of a strongly kicked unstable vortex into a stably moving four-peaked cluster.

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Dates et versions

hal-01393833 , version 1 (08-11-2016)

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Valentin Besse, Hervé Leblond, Dumitru Mihalache, Boris Malomed, Juan Archilla, et al.. Pattern Formation by Traveling Localized Modes in Two-Dimensional Dissipative Media with Lattice Potentials. Springer Series in Materials ScienceQuodons in MicaPattern Formation by Traveling Localized Modes in Two-Dimensional Dissipative Media with Lattice Potentials, 221, Springer International Publishing, pp.99-128, 2015, 978-3-319-21044-5. ⟨10.1007/978-3-319-21045-2_4⟩. ⟨hal-01393833⟩
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