English

Gauged Hopfions

High Energy Physics - Theory 2014-05-21 v1

Abstract

We discuss the U(1)U(1) gauged version of the 3+1 dimensional Faddeev-Skyrme model supplemented by the Maxwell term. We show that there exist axially symmetric static solutions coupled to the non-integer toroidal flux of magnetic field, which revert to the usual Hopfions Am,n{\cal A}_{m,n} of lower degrees Q=mnQ=mn in the limit of the gauge coupling constant vanishing. The masses of the static gauged Hopfions are found to be less than the corresponding masses of the usual ungauged solitons A1,1{\cal A}_{1,1} and A2,1{\cal A}_{2,1} respectively, they become lighter as gauge coupling increases. The dependence of the solutions on the gauge coupling is investigated. We find that in the strong coupling regime the gauged Hopfion carries two magnetic fluxes, which are quantized in units of 2π2\pi, carrying nn and mm quanta respectively. The first flux encircles the position curve and the second one is directed along the symmetry axis. Effective quantization of the field in the gauge sector may allow us to reconsider the usual arguments concerning the lower topological bound in the Faddeev-Skyrme-Maxwell model.

Keywords

Cite

@article{arxiv.1404.4867,
  title  = {Gauged Hopfions},
  author = {Ya. Shnir and G. Zhilin},
  journal= {arXiv preprint arXiv:1404.4867},
  year   = {2014}
}

Comments

10 pages, 5 figures

R2 v1 2026-06-22T03:53:57.209Z