English

Semiclassics for the QCD vacuum structure through $T^2$-compactification with the baryon-'t Hooft flux

High Energy Physics - Theory 2024-04-24 v3 High Energy Physics - Lattice High Energy Physics - Phenomenology Nuclear Theory

Abstract

We study QCD vacuum structure with the topological θ\theta angle using a recently proposed semiclassical approach on R2×T2\mathbb{R}^2 \times T^2 with the 't Hooft and baryon magnetic fluxes. Under the assumption of adiabatic continuity in this setup, the confining vacuum can be described by the dilute gas of center vortices. With this semiclassical approach, we derive the 2d effective description at small T2T^2 and successfully explain the reasonable theta dependence of the QCD vacuum: In the one-flavor QCD at θ=π\theta = \pi, the CPCP symmetry is spontaneously broken for quark mass above a critical value and restored for a subcritical mass, while the CPCP symmetry is always spontaneously broken in the multi-flavor QCD at θ=π\theta = \pi. From our semiclassical description, we discuss implications to the 44d chiral Lagrangian and propose how the η\eta' meson should be incorporated in consistent with known global structures: The periodicity of the η\eta' should be extended from the naive one 2π2\pi to 2πN2\pi N. Additionally, we revisit the phase diagram of Nf=1+1N_f = 1+1 and Nf=1+1+1N_f = 1+1+1 QCD on the up and down quark mass plane, confirming and refining the existence of the CPCP-broken Dashen phase.

Keywords

Cite

@article{arxiv.2402.04320,
  title  = {Semiclassics for the QCD vacuum structure through $T^2$-compactification with the baryon-'t Hooft flux},
  author = {Yui Hayashi and Yuya Tanizaki},
  journal= {arXiv preprint arXiv:2402.04320},
  year   = {2024}
}

Comments

39 pages, 5 figures, v2: footnotes and references added, v3: clarifications added