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Generalized symmetries and anomalies of 3d N = 4 SCFTs

Bhardwaj, Lakshya; Bullimore, Mathew; Ferrari, Andrea E. V.; Schäfer-Nameki, Sakura

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Authors

Lakshya Bhardwaj

Sakura Schäfer-Nameki



Abstract

We study generalized global symmetries and their 't Hooft anomalies in 3d N=4 superconformal field theories (SCFTs). Following some general considerations, we focus on good quiver gauge theories, comprised of balanced unitary nodes and unbalanced unitary and special unitary nodes. While the global form of the Higgs branch symmetry group may be determined from the UV Lagrangian, the global form of Coulomb branch symmetry groups and associated mixed 't Hooft anomalies are more subtle due to potential symmetry enhancement in the IR. We describe how Coulomb branch symmetry groups and their mixed 't Hooft anomalies can be deduced from the UV Lagrangian by studying center charges of various types of monopole operators, providing a concrete and unambiguous way to implement 't Hooft anomaly matching. The final expression for the symmetry group and 't Hooft anomalies has a concise form that can be easily read off from the quiver data, specifically from the positions of the unbalanced and flavor nodes with respect to the positions of the balanced nodes. We provide consistency checks by applying our method to compute symmetry groups of 3d N=4 theories corresponding to magnetic quivers of 4d Class S theories and 5d SCFTs. We are able to match these results against the flavor symmetry groups of the 4d and 5d theories computed using independent methods. Another strong consistency check is provided by comparing symmetry groups and anomalies of two theories related by 3d mirror symmetry.

Citation

Bhardwaj, L., Bullimore, M., Ferrari, A. E. V., & Schäfer-Nameki, S. (2024). Generalized symmetries and anomalies of 3d N = 4 SCFTs. SciPost Physics, 16(3), Article 080. https://doi.org/10.21468/scipostphys.16.3.080

Journal Article Type Article
Acceptance Date Feb 28, 2024
Online Publication Date Mar 20, 2024
Publication Date 2024-03
Deposit Date May 10, 2024
Publicly Available Date May 10, 2024
Journal SciPost Physics
Print ISSN 2542-4653
Publisher SciPost
Peer Reviewed Peer Reviewed
Volume 16
Issue 3
Article Number 080
DOI https://doi.org/10.21468/scipostphys.16.3.080
Public URL https://durham-repository.worktribe.com/output/2436683

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