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6d SCFTs and U(1) Flavour Symmetries

We study the behaviour of abelian gauge symmetries in six-dimensional N = (1,0) theories upon decoupling gravity and investigate abelian flavour symmetries in the context of 6d N = (1, 0) SCFTs. From a supergravity perspective, the anomaly cancellation mechanism implies that abelian gauge symmetries...

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Detalles Bibliográficos
Autores principales: Lee, Seung-Joo, Regalado, Diego, Weigand, Timo
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP11(2018)147
http://cds.cern.ch/record/2309965
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author Lee, Seung-Joo
Regalado, Diego
Weigand, Timo
author_facet Lee, Seung-Joo
Regalado, Diego
Weigand, Timo
author_sort Lee, Seung-Joo
collection CERN
description We study the behaviour of abelian gauge symmetries in six-dimensional N = (1,0) theories upon decoupling gravity and investigate abelian flavour symmetries in the context of 6d N = (1, 0) SCFTs. From a supergravity perspective, the anomaly cancellation mechanism implies that abelian gauge symmetries can only survive as global symmetries as gravity is decoupled. The flavour symmetries obtained in this way are shown to be free of ABJ anomalies, and their ’t Hooft anomaly polynomial in the decoupling limit is obtained explicitly. In an F-theory realisation the decoupling of abelian gauge symmetries implies that a mathematical object known as the height pairing of a rational section is not contractible as a curve on the base of an elliptic Calabi-Yau threefold. We prove this prediction from supergravity by making use of the properties of the Mordell-Weil group of rational sections. In the second part of this paper we study the appearance of abelian flavour symmetries in 6d N = (1, 0) SCFTs. We elucidate both the geometric origin of such flavour symmetries in F-theory and their field theoretic interpretation in terms of suitable linear combinations of geometrically massive U(1)s. Our general results are illustrated in various explicit examples.
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publishDate 2018
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spelling cern-23099652023-10-04T06:05:28Zdoi:10.1007/JHEP11(2018)147http://cds.cern.ch/record/2309965engLee, Seung-JooRegalado, DiegoWeigand, Timo6d SCFTs and U(1) Flavour Symmetrieshep-thParticle Physics - TheoryWe study the behaviour of abelian gauge symmetries in six-dimensional N = (1,0) theories upon decoupling gravity and investigate abelian flavour symmetries in the context of 6d N = (1, 0) SCFTs. From a supergravity perspective, the anomaly cancellation mechanism implies that abelian gauge symmetries can only survive as global symmetries as gravity is decoupled. The flavour symmetries obtained in this way are shown to be free of ABJ anomalies, and their ’t Hooft anomaly polynomial in the decoupling limit is obtained explicitly. In an F-theory realisation the decoupling of abelian gauge symmetries implies that a mathematical object known as the height pairing of a rational section is not contractible as a curve on the base of an elliptic Calabi-Yau threefold. We prove this prediction from supergravity by making use of the properties of the Mordell-Weil group of rational sections. In the second part of this paper we study the appearance of abelian flavour symmetries in 6d N = (1, 0) SCFTs. We elucidate both the geometric origin of such flavour symmetries in F-theory and their field theoretic interpretation in terms of suitable linear combinations of geometrically massive U(1)s. Our general results are illustrated in various explicit examples.We study the behaviour of abelian gauge symmetries in six-dimensional N=(1,0) theories upon decoupling gravity and investigate abelian flavour symmetries in the context of 6d N=(1,0) SCFTs. From a supergravity perspective, the anomaly cancellation mechanism implies that abelian gauge symmetries can only survive as global symmetries as gravity is decoupled. The flavour symmetries obtained in this way are shown to be free of ABJ anomalies, and their 't Hooft anomaly polynomial in the decoupling limit is obtained explicitly. In an F-theory realisation the decoupling of abelian gauge symmetries implies that a mathematical object known as the height pairing of a rational section is not contractible as a curve on the base of an elliptic Calabi-Yau threefold. We prove this prediction from supergravity by making use of the properties of the Mordell-Weil group of rational sections. In the second part of this paper we study the appearance of abelian flavour symmetries in 6d N=(1,0) SCFTs. We elucidate both the geometric origin of such flavour symmetries in F-theory and their field theoretic interpretation in terms of suitable linear combinations of geometrically massive U(1)s. Our general results are illustrated in various explicit examples.arXiv:1803.07998CERN-TH-2018-054oai:cds.cern.ch:23099652018-03-21
spellingShingle hep-th
Particle Physics - Theory
Lee, Seung-Joo
Regalado, Diego
Weigand, Timo
6d SCFTs and U(1) Flavour Symmetries
title 6d SCFTs and U(1) Flavour Symmetries
title_full 6d SCFTs and U(1) Flavour Symmetries
title_fullStr 6d SCFTs and U(1) Flavour Symmetries
title_full_unstemmed 6d SCFTs and U(1) Flavour Symmetries
title_short 6d SCFTs and U(1) Flavour Symmetries
title_sort 6d scfts and u(1) flavour symmetries
topic hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP11(2018)147
http://cds.cern.ch/record/2309965
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AT regaladodiego 6dscftsandu1flavoursymmetries
AT weigandtimo 6dscftsandu1flavoursymmetries