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Main Authors: Argurio, Riccardo, Collinucci, Andrés, Mancani, Salvo, Meynet, Shani, Mol, Louan, Tatitscheff, Valdo
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2409.03694
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author Argurio, Riccardo
Collinucci, Andrés
Mancani, Salvo
Meynet, Shani
Mol, Louan
Tatitscheff, Valdo
author_facet Argurio, Riccardo
Collinucci, Andrés
Mancani, Salvo
Meynet, Shani
Mol, Louan
Tatitscheff, Valdo
contents We revisit the construction of the duality group for $\mathcal N=2$ $\widehat{A}_n$-shaped quivers SCFTs and generalize it to the previously unexplored case of $\widehat{D}_n$-shaped quivers. We then provide a systematic description of non-invertible duality symmetries in both classes. Furthermore, we characterize the $\mathcal N=1$ mass deformations of these theories that preserve such symmetries, thereby identifying a large class of $\mathcal N=1$ SCFTs with non-invertible duality symmetries inherited from their parent $\mathcal N=2$ theories.
format Preprint
id arxiv_https___arxiv_org_abs_2409_03694
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Inherited non-invertible duality symmetries in quiver SCFTs
Argurio, Riccardo
Collinucci, Andrés
Mancani, Salvo
Meynet, Shani
Mol, Louan
Tatitscheff, Valdo
High Energy Physics - Theory
We revisit the construction of the duality group for $\mathcal N=2$ $\widehat{A}_n$-shaped quivers SCFTs and generalize it to the previously unexplored case of $\widehat{D}_n$-shaped quivers. We then provide a systematic description of non-invertible duality symmetries in both classes. Furthermore, we characterize the $\mathcal N=1$ mass deformations of these theories that preserve such symmetries, thereby identifying a large class of $\mathcal N=1$ SCFTs with non-invertible duality symmetries inherited from their parent $\mathcal N=2$ theories.
title Inherited non-invertible duality symmetries in quiver SCFTs
topic High Energy Physics - Theory
url https://arxiv.org/abs/2409.03694