Stability of dark solitons in a bubble Bose-Einstein condensate
Abstract
The stability of nonlinear waves on curved surfaces is a problem of widespread interest across physics. Here, we establish the stability criteria for dark solitons on a spherical Bose-Einstein condensate. We demonstrate a sharp instability threshold in the nonlinear parameter, beyond which solitons decay into vortex dipoles via snake instabilities. Analytically and numerically, we prove this decay is dictated by a single unstable mode for each angular momentum , which is a universal mechanism that controls the resulting vortex state. Unlike in the full three-dimensional case, where snake instabilities lead to vortex rings, a dark soliton confined to the surface of a bubble can only decay into vortex pairs.
Cite
@article{arxiv.2511.04385,
title = {Stability of dark solitons in a bubble Bose-Einstein condensate},
author = {Raphael Wictky Sallatti and Lauro Tomio and Dmitry Pelinovsky and Arnaldo Gammal},
journal= {arXiv preprint arXiv:2511.04385},
year = {2026}
}
Comments
11 pages , 5 figures, accepted in Physical Review A Letter (2026)