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Multiscale expansions avector solitons of a two-dimensional nonlocal nonlinear Schrödinger system
Authors:Georgios N Koutsokostas  Theodoros P Horikis  Dimitrios J Frantzeskakis  Barbara Prinari  Gino Biondini
Institution:1. Department of Physics, National and Kapodistrian University of Athens, Athens, Greece;2. Department of Mathematics, University of Ioannina, Ioannina, Greece;3. Department of Mathematics, State University of New York at Buffalo, Buffalo, New York
Abstract:One- and two-dimensional solitons of a multicomponent nonlocal nonlinear Schrödinger (NLS) system are constructed. The model finds applications in nonlinear optics, where it may describe the interaction of optical beams of different frequencies. We asymptotically reduce the model, via multiscale analysis, to completely integrable ones in both Cartesian and cylindrical geometries; we thus derive a Kadomtsev-Petviashvili equation and its cylindrical counterpart, Johnson's equation. This way, we derive approximate soliton solutions of the nonlocal NLS system, which have the form of: (a) dark or antidark soliton stripes and (b) dark lumps in the Cartesian geometry, as well as (c) ring dark or antidark solitons in the cylindrical geometry. The type of the soliton, namely dark or antidark, is determined by the degree of nonlocality: dark (antidark) soliton states are formed for weaker (stronger) nonlocality. We perform numerical simulations and show that the derived soliton solutions do exist and propagate undistorted in the original nonlocal NLS system.
Keywords:dark and antidark solitons  KP equations  multiple scales analysis  nonlocal coupled NLS
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