English

Baby Skyrmion crystals

High Energy Physics - Theory 2022-01-21 v2

Abstract

This paper describes a model for baby Skyrme crystal chunks with arbitrary potential by considering energy contributions from the bulk and surface of a crystal chunk. We focus on two potentials which yield distinct Skyrme lattices: the standard potential V=m2(1φ3)V=m^2(1-\varphi^3) and the easy plane potential V=12m2(φ1)2V=\frac{1}{2}m^2 (\varphi^1)^2. In both models, the static energy functional is minimized over all 22-dimensional period lattices, yielding the minimal energy crystal structure(s). For the standard potential, the Skyrmions form a hexagonal crystal structure, whereas, for the easy plane potential, the minimal energy crystal structure is a square lattice of half-charge lumps. We find that square crystal chunks are the global minima in the easy plane model for charges B>6B>6 with 2B2B a perfect square (m2=1m^2=1). In contrast, we observe that hexagonal crystal chunks in the standard model become the global minima for surprisingly large charges, B>954B>954 (m2=0.1m^2=0.1).

Keywords

Cite

@article{arxiv.2111.02217,
  title  = {Baby Skyrmion crystals},
  author = {Paul Leask},
  journal= {arXiv preprint arXiv:2111.02217},
  year   = {2022}
}

Comments

15 pages, 14 figures

R2 v1 2026-06-24T07:24:24.569Z