The interaction of Airy waves and solitons in the three-wave system
Abstract
We employ the generic three-wave system, with the interaction between two components of the fundamental-frequency (FF) wave and second-harmonic (SH) one, to consider collisions of truncated Airy waves (TAWs) and three-wave solitons in a setting which is not available in other nonlinear systems. The advantage is that the single-wave TAWs, carried by either one of the FF component, are not distorted by the nonlinearity and are stable, three-wave solitons being stable too in the same system. The collision between mutually symmetric TAWs, carried by the different FF components, transforms them into a set of solitons, the number of which decreases with the increase of the total power. The TAW absorbs an incident small-power soliton, and a high-power soliton absorbs the TAW. Between these limits, the collision with an incident soliton converts the TAW into two solitons, with a remnant of the TAW attached to one of them, or leads to formation of a complex TAW-soliton bound state. At large velocities, the collisions become quasi-elastic.
Keywords
Cite
@article{arxiv.1705.06536,
title = {The interaction of Airy waves and solitons in the three-wave system},
author = {Thawatchai Mayteevarunyoo and Boris A. Malomed},
journal= {arXiv preprint arXiv:1705.06536},
year = {2017}
}
Comments
14 pages, 16 figures, Journal of Optics, 2017, in press