English

Classification of large N superconformal gauge theories with a dense spectrum

High Energy Physics - Theory 2021-10-27 v2

Abstract

We classify the large NN limits of four-dimensional supersymmetric gauge theories with simple gauge groups that flow to superconformal fixed points. We restrict ourselves to the ones without a superpotential and with a fixed flavor symmetry. We find 35 classes in total, with 8 having a dense spectrum of chiral gauge-invariant operators. The central charges aa and cc for the dense theories grow linearly in NN in contrast to the N2N^2 growth for the theories with a sparse spectrum. The difference between the central charges aca-c can have both signs, and it does not vanish in the large NN limit for the dense theories. We find that there can be multiple bands separated by a gap, or a discrete spectrum above the band. We also find a criterion on the matter content for the fixed point theory to possess either a dense or sparse spectrum. We discover a few curious aspects regarding supersymmetric RG flows and aa-maximization along the way. For all the theories with the dense spectrum, the AdS version of the Weak Gravity Conjecture (including the convex hull condition for the cases with multiple U(1)U(1)'s) holds for large enough NN even though they do not have weakly-coupled gravity duals.

Keywords

Cite

@article{arxiv.2007.16165,
  title  = {Classification of large N superconformal gauge theories with a dense spectrum},
  author = {Prarit Agarwal and Ki-Hong Lee and Jaewon Song},
  journal= {arXiv preprint arXiv:2007.16165},
  year   = {2021}
}

Comments

59 pages, 50 figures, v2: conformal windows and references added