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A model for gauged skyrmions with low binding energies

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journal contribution
posted on 2024-10-01, 08:19 authored by J Cork, D Harland, T Winyard
We consider gauged skyrmions with boundary conditions which break the gauge from SU(2) to U(1) in models derived from Yang-Mills theory. After deriving general topological energy bounds, we approximate charge 1 energy minimisers using KvBLL calorons with non-trivial asymptotic holonomy, use them to calibrate the model to optimise the ratio of energy to lower bound, and compare them with solutions to full numerical simulation. Skyrmions from calorons with non-trivial asymptotic holonomy exhibit a non-zero magnetic dipole moment, which we calculate explicitly, and compare with experimental values for the proton and the neutron. We thus propose a way to develop a physically realistic Skyrme-Maxwell theory, with the potential for exhibiting low binding energies.

Funding

Topological defects in multicomponent Ginzburg-Landau theory

Engineering and Physical Sciences Research Council

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History

Author affiliation

School of Computing and Mathematical Sciences, University of Leicester

Version

  • VoR (Version of Record)

Published in

Journal of Physics A: Mathematical and Theoretical

Volume

55

Issue

1

Pagination

015204 - 015204

Publisher

IOP Publishing

issn

1751-8113

eissn

1751-8121

Acceptance date

2021-11-23

Copyright date

2021

Available date

2024-10-01

Language

en

Data Access Statement

The data that support the findings of this study are available upon reasonable request from the authors.

Rights Retention Statement

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