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Tadpoles and Gauge Symmetries

The tadpole conjecture proposes that complex structure moduli stabilisation by fluxes that have low tadpole charge can be realised only at special points in moduli space, leading generically to (large) gauge symmetries. Here we provide an exhaustive survey of the gauge symmetries arising in F-theory...

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Detalles Bibliográficos
Autores principales: Braun, Andreas P., Fraiman, Bernardo, Graña, Mariana, Lüst, Severin, Parra de Freitas, Héctor
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP08(2023)134
http://cds.cern.ch/record/2859791
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author Braun, Andreas P.
Fraiman, Bernardo
Graña, Mariana
Lüst, Severin
Parra de Freitas, Héctor
author_facet Braun, Andreas P.
Fraiman, Bernardo
Graña, Mariana
Lüst, Severin
Parra de Freitas, Héctor
author_sort Braun, Andreas P.
collection CERN
description The tadpole conjecture proposes that complex structure moduli stabilisation by fluxes that have low tadpole charge can be realised only at special points in moduli space, leading generically to (large) gauge symmetries. Here we provide an exhaustive survey of the gauge symmetries arising in F-theory flux compactifications on products of attractive K3 surfaces, with complex structure moduli fully stabilised. We compute the minimal rank of the left-over non-abelian gauge group for all flux configurations within the tadpole bound, finding that it is always non-zero. It decreases in a roughly linear fashion with the tadpole charge, reaching zero at charge 30. By working out possible gauge algebras for different values of the tadpole, we find that all simple ADE Lie algebras of rank ≤ 18 appear.
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institution Organización Europea para la Investigación Nuclear
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publishDate 2023
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spelling cern-28597912023-08-30T14:44:35Zdoi:10.1007/JHEP08(2023)134http://cds.cern.ch/record/2859791engBraun, Andreas P.Fraiman, BernardoGraña, MarianaLüst, SeverinParra de Freitas, HéctorTadpoles and Gauge Symmetrieshep-thParticle Physics - TheoryThe tadpole conjecture proposes that complex structure moduli stabilisation by fluxes that have low tadpole charge can be realised only at special points in moduli space, leading generically to (large) gauge symmetries. Here we provide an exhaustive survey of the gauge symmetries arising in F-theory flux compactifications on products of attractive K3 surfaces, with complex structure moduli fully stabilised. We compute the minimal rank of the left-over non-abelian gauge group for all flux configurations within the tadpole bound, finding that it is always non-zero. It decreases in a roughly linear fashion with the tadpole charge, reaching zero at charge 30. By working out possible gauge algebras for different values of the tadpole, we find that all simple ADE Lie algebras of rank ≤ 18 appear.The tadpole conjecture proposes that complex structure moduli stabilisation by fluxes that have low tadpole charge can be realised only at special points in moduli space, leading generically to (large) gauge symmetries. Here we provide an exhaustive survey of the gauge symmetries arising in F-theory flux compactifications on products of attractive $\mbox{K3}$ surfaces, with complex structure moduli fully stabilised. We compute the minimal rank of the left-over non-abelian gauge group for all flux configurations within the tadpole bound, finding that it is always non-zero. It decreases in a roughly linear fashion with the tadpole charge, reaching zero at charge 30. By working out possible gauge algebras for different values of the tadpole, we find that all simple ADE Lie algebras of rank $\le 18$ appear.arXiv:2304.06751oai:cds.cern.ch:28597912023-04-13
spellingShingle hep-th
Particle Physics - Theory
Braun, Andreas P.
Fraiman, Bernardo
Graña, Mariana
Lüst, Severin
Parra de Freitas, Héctor
Tadpoles and Gauge Symmetries
title Tadpoles and Gauge Symmetries
title_full Tadpoles and Gauge Symmetries
title_fullStr Tadpoles and Gauge Symmetries
title_full_unstemmed Tadpoles and Gauge Symmetries
title_short Tadpoles and Gauge Symmetries
title_sort tadpoles and gauge symmetries
topic hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP08(2023)134
http://cds.cern.ch/record/2859791
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