English

Re-interpretation of Skyrme Theory: New Topological structures

High Energy Physics - Theory 2018-03-22 v1

Abstract

Recently it has been pointed out that the skyrmions carry two independent topology, the baryon topology and the monopole topology. We provide more evidence to support this. In specific, we prove that the baryon number BB can be decomposed to the monopole number mm and the shell number nn, so that BB is given by B=mnB=mn. This tells that the skyrmions may more conveniently be classified by two integers (m,n)(m,n). This is because the rational map which determines the baryon number in the popular multi-skyrmion solutions actually describes the monopole topology π2(S2)\pi_2(S^2) which is different from the baryon topology π3(S3)\pi_3(S^3). Moreover, we show that the baby skyrmions can also be generalized to have two topology, π1(S1)\pi_1(S^1) and π2(S2)\pi_2(S^2), and thus should be classified by two topological numbers (m,n)(m,n). Furthermore, we show that the vacuum of the Skyrme theory can be classified by two topological numbers (p,q)(p,q), the π1(S1)\pi_1(S^1) of the sigma-field and the π3(S2)\pi_3(S^2) of the normalized pion-field. This means that the Skyrme theory has multiple vacua similar to the Sine-Gordon theory and QCD combined together. This puts the Skyrme theory in a totally new perspective. We discussthe physical implications of our results.

Keywords

Cite

@article{arxiv.1704.05975,
  title  = {Re-interpretation of Skyrme Theory: New Topological structures},
  author = {Pengming Zhang and Kyoungtae Kimm and Liping Zou and Y. M. Cho},
  journal= {arXiv preprint arXiv:1704.05975},
  year   = {2018}
}