The Branes Behind Generalized Symmetry Operators

Abstract The modern approach tom‐form global symmetries in ad‐dimensional quantum field theory (QFT) entails specifying dimension topological generalized symmetry operators which non‐trivially link withm‐dimensional defect operators. In QFTs engineered via string constructions on a non‐compact geome...

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Bibliographic Details
Published inFortschritte der Physik Vol. 71; no. 1
Main Authors Heckman, Jonathan J., Hübner, Max, Torres, Ethan, Zhang, Hao Y.
Format Journal Article
LanguageEnglish
Published United States Wiley 12.11.2022
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Summary:Abstract The modern approach tom‐form global symmetries in ad‐dimensional quantum field theory (QFT) entails specifying dimension topological generalized symmetry operators which non‐trivially link withm‐dimensional defect operators. In QFTs engineered via string constructions on a non‐compact geometryX, these defects descend from branes wrapped on non‐compact cycles which extend from a localized source / singularity to the boundary . The generalized symmetry operators which link with these defects arise from magnetic dual branes wrapped on cycles in . This provides a systematic way to read off various properties of such topological operators, including their worldvolume topological field theories, and the resulting fusion rules. We illustrate these general features in the context of 6D superconformal field theories, where we use the F‐theory realization of these theories to read off the worldvolume theory on the generalized symmetry operators. Defects of dimension 3 which are charged under a suitable 3‐form symmetry detect a non‐invertible fusion rule for these operators. We also sketch how similar considerations hold for related systems.
Bibliography:USDOE Office of Science (SC)
SC0013528
ISSN:0015-8208