Weyl invariant Jacobi forms along Higgsing trees

Abstract Using topological string techniques, we compute BPS counting functions of 5d gauge theories which descend from 6d superconformal field theories upon circle compactification. Such theories are naturally organized in terms of nodes of Higgsing trees. We demonstrate that the specialization of...

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Main Authors: Zhihao Duan, David Jaramillo Duque, Amir-Kian Kashani-Poor
Format: Article
Language:English
Published: SpringerOpen 2021-04-01
Series:Journal of High Energy Physics
Subjects:
Online Access:https://doi.org/10.1007/JHEP04(2021)224
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spelling doaj-05e4e7a422174b3381979c14c32ddd852021-04-25T11:07:34ZengSpringerOpenJournal of High Energy Physics1029-84792021-04-012021415810.1007/JHEP04(2021)224Weyl invariant Jacobi forms along Higgsing treesZhihao Duan0David Jaramillo Duque1Amir-Kian Kashani-Poor2School of Physics, Korea Institute for Advanced StudyLPENS, CNRS, PSL Research University, Sorbonne Universités, UPMCLPENS, CNRS, PSL Research University, Sorbonne Universités, UPMCAbstract Using topological string techniques, we compute BPS counting functions of 5d gauge theories which descend from 6d superconformal field theories upon circle compactification. Such theories are naturally organized in terms of nodes of Higgsing trees. We demonstrate that the specialization of the partition function as we move from the crown to the root of a tree is determined by homomorphisms between rings of Weyl invariant Jacobi forms. Our computations are made feasible by the fact that symmetry enhancements of the gauge theory which are manifest on the massless spectrum are inherited by the entire tower of BPS particles. In some cases, these symmetry enhancements have a nice relation to the 1-form symmetry of the associated gauge theory.https://doi.org/10.1007/JHEP04(2021)224Field Theories in Higher DimensionsGauge SymmetryGlobal SymmetriesTopological Strings
collection DOAJ
language English
format Article
sources DOAJ
author Zhihao Duan
David Jaramillo Duque
Amir-Kian Kashani-Poor
spellingShingle Zhihao Duan
David Jaramillo Duque
Amir-Kian Kashani-Poor
Weyl invariant Jacobi forms along Higgsing trees
Journal of High Energy Physics
Field Theories in Higher Dimensions
Gauge Symmetry
Global Symmetries
Topological Strings
author_facet Zhihao Duan
David Jaramillo Duque
Amir-Kian Kashani-Poor
author_sort Zhihao Duan
title Weyl invariant Jacobi forms along Higgsing trees
title_short Weyl invariant Jacobi forms along Higgsing trees
title_full Weyl invariant Jacobi forms along Higgsing trees
title_fullStr Weyl invariant Jacobi forms along Higgsing trees
title_full_unstemmed Weyl invariant Jacobi forms along Higgsing trees
title_sort weyl invariant jacobi forms along higgsing trees
publisher SpringerOpen
series Journal of High Energy Physics
issn 1029-8479
publishDate 2021-04-01
description Abstract Using topological string techniques, we compute BPS counting functions of 5d gauge theories which descend from 6d superconformal field theories upon circle compactification. Such theories are naturally organized in terms of nodes of Higgsing trees. We demonstrate that the specialization of the partition function as we move from the crown to the root of a tree is determined by homomorphisms between rings of Weyl invariant Jacobi forms. Our computations are made feasible by the fact that symmetry enhancements of the gauge theory which are manifest on the massless spectrum are inherited by the entire tower of BPS particles. In some cases, these symmetry enhancements have a nice relation to the 1-form symmetry of the associated gauge theory.
topic Field Theories in Higher Dimensions
Gauge Symmetry
Global Symmetries
Topological Strings
url https://doi.org/10.1007/JHEP04(2021)224
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AT amirkiankashanipoor weylinvariantjacobiformsalonghiggsingtrees
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