Stable high-order solitons in spiral potentials
Pattern Formation and Solitons
2026-04-02 v1
Abstract
We present a comprehensive study of optical solitons supported by spiral potentials in media with the cubic-quintic (CQ) nonlinearity. A variety of families of stationary states, including fundamental and high-order (excited) in-phase, out-of-phase, and hybrid-phase ones, are found. The linear stability analysis, corroborated by direct simulations, demonstrates that all upper-branch nonlinear states in potentials with different azimuthal indices are \emph{completely stable}, which rarely occurs in soliton physics. Our findings suggest spiral potentials as an effective means for multistable optical trapping, with potential applications in all-optical data processing.
Cite
@article{arxiv.2604.00446,
title = {Stable high-order solitons in spiral potentials},
author = {Liangwei Dong and Jingyi Deng and Changming Huang and Boris A. Malomed},
journal= {arXiv preprint arXiv:2604.00446},
year = {2026}
}
Comments
4 pages, 7 figures, to be published in Optics Letters