Twisted-Circle Compactifications of SQCD-like Theories and Holography
Abstract
We construct and analyse holographic duals to a class of four-dimensional N = 1 SU() SQCD-like theories compactified on a circle with an R-symmetry twist. The setup originates from type IIB backgrounds previously proposed as duals to SQCD with fundamental flavours. The U(1) R-symmetry is anomaly-free only if . We implement a supersymmetric twisted-circle reduction, holographically realised through a smoothly shrinking fibered over the internal U(1) direction. We obtain new regular type IIB supergravity backgrounds that are valid only if the condition is satisfied--mirroring the anomaly cancellation requirement in the field theory. We compute various field-theoretic observables--including the Chern-Simons level, Wilson loop and the holographic central charge--showing the emergence of a 3D gapped phase consistent with a Chern-Simons TQFT. This work highlights the interplay between anomalies, supersymmetry, and geometry in the holographic realisation of compactified gauge theories with fundamental matter.
Keywords
Cite
@article{arxiv.2506.15778,
title = {Twisted-Circle Compactifications of SQCD-like Theories and Holography},
author = {Niall T. Macpherson and Paul Merrikin and Carlos Nunez and Ricardo Stuardo},
journal= {arXiv preprint arXiv:2506.15778},
year = {2025}
}
Comments
21 pages, two figures. v2: Typos corrected, references added. v3: Typos corrected. Version to appear in JHEP