English

M5-branes Probing Flux Backgrounds

High Energy Physics - Theory 2022-11-09 v3

Abstract

We analyze the global symmetries and anomalies of 4d N=1\mathcal{N} = 1 field theories that arise from a stack of NN M5-branes probing a class of flux backgrounds. These backgrounds consist of a resolved C2/Zk\mathbb{C}^2 / \mathbb{Z}_k singularity fibered over a smooth Riemann surface of genus g2g \geq 2, supported by a non-trivial G4G_4-flux configuration labeled by a collection of 2(k1)2(k-1) flux quanta, {Ni}\{N_i\}. For k=2k=2, this setup defines a non-trivial superconformal field theory (SCFT) in the IR, which is holographically dual to an explicit AdS5AdS_5 solution first described by Gauntlett, Martelli, Sparks, and Waldram. The generalization to k3k \geq 3 is hard to tackle directly within holography. Instead, in this paper we lay the groundwork for a systematic analysis of such a generalization by adopting anomaly inflow methods to identify continuous and discrete global symmetries of the 4d field theories. We also compute the 't Hooft anomalies for continuous symmetries at leading order in the limit of large NN, NiN_i.

Keywords

Cite

@article{arxiv.2111.01790,
  title  = {M5-branes Probing Flux Backgrounds},
  author = {Ibrahima Bah and Federico Bonetti and Enoch Leung and Peter Weck},
  journal= {arXiv preprint arXiv:2111.01790},
  year   = {2022}
}
R2 v1 2026-06-24T07:23:10.539Z