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February 25, 2026Journal of High Energy Physics2 citationsOpen Access

Baryons as linked vortices in QCD matter with isospin asymmetry

YHYu HamadaMNMuneto NittaZQZebin Qiu

Key Points

  • To explore baryonic structures in low-energy QCD under isospin asymmetry using chiral perturbation theory.
  • Utilized chiral perturbation theory at leading order.
  • Investigated the role of baryon and isospin chemical potentials in vortex formation.
  • Examined the structure transformation upon introducing pion mass.
  • Identified linked configurations of charged and neutral pions forming distinct vortices.
  • Proposed a novel phase of dense baryonic matter linked to Skyrmion-type solutions.
  • Established that the linking number represents baryon number in this context.

Abstract

A bstract We investigate a baryonic structure in low-energy QCD via a model-independent way using the chiral perturbation theory at the leading order, in the presence of the baryon chemical potential μ B , the isospin chemical potential μ I , and the electromagnetic coupling. For such a scenario in the chiral limit, it has been known that the neutral pion winds like in the chiral soliton lattice, confined within an Abrikosov-Nielsen-Olesen (ANO) vortex of the charged pions. This structure undergoes a drastic transformation when the pion mass is introduced, i.e., both charged and neutral pions condense in the bulk, allowing two distinct types of vortices: the charged pions constitute a local ANO-like vortex, while the neutral pion configures a global vortex which is further attached to a domain wall also known as the chiral soliton. Remarkably, the ANO vortex forms a topological linking with the closed global vortex line, when μ B exceeds its critical value as a function of μ I . The linking number has the physical meaning of the baryon number in view of the Wess-Zumino-Witten term. In this sense, the linked configuration realizes a stable Skyrmion-type solution, but innovatively without the Skyrme term. We therefore propose a novel phase of dense baryonic matter comprised of such vortices, which shall play a role in the low-energy QCD phase diagram.

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Cite This Study

Hamada et al. (2026) studied this question.

synapsesocial.com/papers/699e920af5123be5ed04ff55https://doi.org/10.1007/jhep02(2026)200
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