Half-Skyrmions and Spike-Vortex Solutions of Two-Component Nonlinear Schrodinger Systems
Abstract
Recently, skyrmions with integer topological charges have been observed numerically but have not yet been shown rigorously on two-component systems of nonlinear Schrodinger equations (NLSE) describing a binary mixture of Bose-Einstein condensates. Besides, half-skyrmions characterized by half-integer topological charges can also be found in the nonlinear sigma model which is a model of the Bose-Einstein condensate of the Schwinger bosons. Here we prove rigorously the existence of half-skyrmions which may come from a new type of soliton solutions called spike-vortex solutions of two-component systems of NLSE on the entire plane. These spike-vortex solutions having spikes in one component and a vortex in the other component may form half-skyrmions. By Liapunov-Schmidt reduction process, we may find spike-vortex solutions of two-component systems of NLSE.
Keywords
Cite
@article{arxiv.math/0703863,
title = {Half-Skyrmions and Spike-Vortex Solutions of Two-Component Nonlinear Schrodinger Systems},
author = {Tai-Chia Lin and Juncheng Wei},
journal= {arXiv preprint arXiv:math/0703863},
year = {2009}
}
Comments
to appear in J.Math.Phys