Coexisting rogue waves within the (2+1)-component long-wave-short-wave resonance
Affiliation auteurs | Affiliation ok |
Titre | Coexisting rogue waves within the (2+1)-component long-wave-short-wave resonance |
Type de publication | Journal Article |
Year of Publication | 2014 |
Auteurs | Chen S, Soto-Crespo JM, Grelu P |
Journal | PHYSICAL REVIEW E |
Volume | 90 |
Pagination | 033203 |
Date Published | SEP 15 |
Type of Article | Article |
ISSN | 1539-3755 |
Résumé | The coexistence of two different types of fundamental rogue waves is unveiled, based on the coupled equations describing the (2+1)-component long-wave-short-wave resonance. For a wide range of asymptotic background fields, each family of three rogue wave components can be triggered by using a slight deterministic alteration to the otherwise identical background field. The ability to trigger markedly different rogue wave profiles from similar initial conditions is confirmed by numerical simulations. This remarkable feature, which is absent in the scalar nonlinear Schrodinger equation, is attributed to the specific three-wave interaction process and may be universal for a variety of multicomponent wave dynamics spanning from oceanography to nonlinear optics. |
DOI | 10.1103/PhysRevE.90.033203 |