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Dark- and bright-rogue-wave solutions for media with long-wave-short-wave resonance  
Description:
Exact explicit rogue-wave solutions of intricate structures are presented for the long-wave-short-wave resonance equation. These vector parametric solutions feature coupled dark- and bright-field counterparts of the Peregrine soliton. Numerical simulations show the robustness of dark and bright rogue waves in spite of the onset of modulational instability. Dark fields originate from the complex interplay between anomalous dispersion and the nonlinearity driven by the coupled long wave. This unusual mechanism, not available in scalar nonlinear wave equation models, can provide a route to the experimental realization of dark rogue waves in, for instance, negative index media or with capillary-gravity waves. 

Publication year:    2014
Reference:    Chen, S.; Grelu, P.; Soto-Crespo, J.M.; “Dark- and bright-rogue-wave solutions for media with long-wave-short-wave resonance”, Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, vol: 89, Páginas: null - 266 (2014); doi: 10.1103/PhysRevE.89.011201
Magazine:    Phys. Rev. E
Running:    No.
 
Investigación financiada por el Ministerio de Ciencia e Innovación y la Agencia Estatal de Investigación
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