English

Metastable Vacua in Large-$N$ QCD$_3$

High Energy Physics - Theory 2020-01-29 v2 Strongly Correlated Electrons

Abstract

We reexamine the vacuum structure of three-dimensional quantum chromodynamics (QCD3_3) with gauge group SU(N)SU(N), NfN_f fundamental quark flavors, and a level-kk Chern-Simons term. This analysis can be reliably carried out in the large-NN, fixed Nf,kN_f, k limit of the theory, up to certain assumptions that we spell out explicitly. At leading order in the large-NN expansion we find Nf+1N_f + 1 distinct, exactly degenerate vacuum superselection sectors with different patterns of flavor-symmetry breaking. The associated massless Nambu-Goldstone bosons are generically accompanied by topological Chern-Simons theories. This set of vacua contains many candidate phases previously proposed for QCD3_3. At subleading order in the large-NN expansion, the exact degeneracy between the different superselection sectors is lifted, leading to a multitude of metastable vacua. If we dial the quark masses, different metastable vacua can become the true vacuum of the theory, leading to a sequence of first-order phase transitions. This intricate large-NN dynamics can be captured by the previously proposed bosonic dual theories for QCD3_3, provided these bosonic duals are furnished with a suitable scalar potential. Interestingly, this potential must include terms beyond quartic order in the scalar fields.

Keywords

Cite

@article{arxiv.1905.01797,
  title  = {Metastable Vacua in Large-$N$ QCD$_3$},
  author = {Adi Armoni and Thomas T. Dumitrescu and Guido Festuccia and Zohar Komargodski},
  journal= {arXiv preprint arXiv:1905.01797},
  year   = {2020}
}

Comments

57 pages, 11 figures; v2: added references and comment at the end of introduction

R2 v1 2026-06-23T08:57:38.099Z