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Fractionized Skyrmions in Dense Compact-Star Matter

Nuclear Theory 2016-11-23 v2 High Energy Physics - Phenomenology

Abstract

The hadronic matter described as a skyrmion matter embedded in an FCC crystal is found to turn into a half-skyrmion matter with vanishing (in the chiral limit) quark condensate and {\it non-vanishing} pion decay constant {fπf_\pi} at a density n1/2n_{1/2} lower than or near the critical density ncn_c at which hadronic matter changes over to a chiral symmetry restored phase with possibly deconfined quarks. When hidden local gauge fields and a dilaton scalar of spontaneously broken scale symmetry with decay constant fχf_\chi are incorporated, this half-skyrmion phase is characterized by fχfπ0f_\chi\approx f_\pi\neq 0 with the hidden gauge coupling g0g\neq 0 but 1\ll 1. While chiral symmetry is restored {\it globally} in this region in the sense that space-averaged, \laqˉq\ra\la\bar{q}q\ra vanishes, quarks are still confined in massive hadrons and massless pions. This phase is shown to play a crucial role in the model for a smooth transition from a soft EoS at low density to a stiffer EoS at high density, the changeover taking place at n1/22n0n_{1/2} \sim 2n_0. It resembles the "quarkyonic phase" predicted in large NcN_c QCD and represents the "hadronic freedom" regime which figures as a doorway to chiral restoration. The fractionization of skyrmion matter into half-skyrmion matter has a tantalizing analogy to what appears to happen in condensed matter in (2+1) dimensions where half-skyrmions or "merons" enter as relevant degrees of freedom at the interface.

Keywords

Cite

@article{arxiv.1601.00058,
  title  = {Fractionized Skyrmions in Dense Compact-Star Matter},
  author = {Masayasu Harada and Hyun Kyu Lee and Yong-Liang Ma and Mannque Rho},
  journal= {arXiv preprint arXiv:1601.00058},
  year   = {2016}
}

Comments

To appear in {\it The Multifaceted Skyrmion} (2nd Edition) (World Scientific, Singapore) ed. by M. Rho and I. Zahed; typos corrected

R2 v1 2026-06-22T12:21:22.798Z