English

Condensates and anomaly cascade in vector-like theories

High Energy Physics - Theory 2021-04-07 v1 High Energy Physics - Lattice High Energy Physics - Phenomenology

Abstract

We study the bilinear and higher-order fermion condensates in 44-dimensional SU(N)SU(N) gauge theories with a single Dirac fermion in a general representation. Augmented with a mixed anomaly between the 00-form discrete chiral, 11-form center, and 00-form baryon number symmetries (BC anomaly), we sort out theories that admit higher-order condensates and vanishing fermion bilinears. Then, the BC anomaly is utilized to prove, in the absence of a topological quantum field theory, that nonvanishing fermion bilinears are inevitable in infrared-gapped theories with 22-index (anti)symmetric fermions. We also contrast the BC anomaly with the 00-form anomalies and show that it is the former anomaly that determines the infrared physics; we argue that the BC anomaly lurks deep to the infrared while the 00-form anomalies are just variations of local terms. We provide evidence of this assertion by studying the BC anomaly in vector-like theories compactified on a small spacial circle. These theories are weakly-coupled, under analytical control, and they admit a dual description in terms of abelian photons that determine the deep infrared dynamics. We show that the dual photons talk directly to the 11-form center symmetry in order to match the BC anomaly, while the 00-form anomalies are variations of local terms and are matched by fiat. Finally, we study the fate of the BC anomaly in the compactified theories when they are held at a finite temperature. The effective field theory that describes the low-energy physics is 22-dimensional. We show that the BC anomaly cascades from 44 to 22 dimensions.

Keywords

Cite

@article{arxiv.2101.04132,
  title  = {Condensates and anomaly cascade in vector-like theories},
  author = {Mohamed M. Anber},
  journal= {arXiv preprint arXiv:2101.04132},
  year   = {2021}
}

Comments

29 pages, 2 figures

R2 v1 2026-06-23T22:01:48.976Z