English

Quantum phase transitions and new scales in QCD-like theories

High Energy Physics - Theory 2013-05-29 v1 High Energy Physics - Lattice

Abstract

It is commonly believed that in confining vector-like gauge theories the center and chiral symmetry realizations are parametrically entangled, and if phase transitions occur, they must take place around the strong scale Λ1\Lambda^{-1} of the gauge theory. We demonstrate that (non-thermal) vector-like theories formulated on R3×S1{\mathbb R}^{3} \times S^1 where S1S^1 is a spatial circle exhibit new dynamical scales and new phenomena. There are chiral phase transitions taking place at Λ1/Nc\Lambda^{-1}/N_c in the absence of any change in center symmetry. Λ1/Nc\Lambda^{-1}/N_c, invisible in (planar) perturbation theory, is also the scale where abelian versus non-abelian confinement regimes meet. Large NcN_c volume independence (a working Eguchi-Kawai reduction) provides new insights and independently confirms the existence of these scales. We show that certain phases and scales are outside the reach of holographic (supergravity) modeling of QCD.

Keywords

Cite

@article{arxiv.0807.0466,
  title  = {Quantum phase transitions and new scales in QCD-like theories},
  author = {Mithat Unsal},
  journal= {arXiv preprint arXiv:0807.0466},
  year   = {2013}
}

Comments

4 pages, 1 figure

R2 v1 2026-06-21T10:57:00.364Z