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A Tower Weak Gravity Conjecture from Infrared Consistency

<!--HTML-->We analyze infrared consistency conditions of 3D and 4D effective field theories with massive scalars or fermions charged under multiple U(1) gauge fields. At low energies, one can integrate out the massive particles and thus obtain a one-loop effective action for the gauge fields....

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Detalles Bibliográficos
Autor principal: Andriolo, Stefano
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2680576
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author Andriolo, Stefano
author_facet Andriolo, Stefano
author_sort Andriolo, Stefano
collection CERN
description <!--HTML-->We analyze infrared consistency conditions of 3D and 4D effective field theories with massive scalars or fermions charged under multiple U(1) gauge fields. At low energies, one can integrate out the massive particles and thus obtain a one-loop effective action for the gauge fields. In the regime where charge-independent contributions to higher-derivative terms in the action are sufficiently small, it is then possible to derive constraints on the charge-to-mass ratios of the massive particles from requiring that photons propagate causally and have an analytic S-matrix. We thus find that the theories need to contain bifundamentals other than satisfying the convex-hull condition. Demanding self-consistency of the constraints under Kaluza-Klein compactification, we show that, for scalars, they imply a stronger version of the weak gravity conjecture in which the charge-to-mass ratios of an infinite tower of particles are bounded from below. We find that the tower must again include bifundamentals but does not necessarily have to occupy a charge (sub-)lattice.
id cern-2680576
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
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spelling cern-26805762022-11-02T22:21:50Zhttp://cds.cern.ch/record/2680576engAndriolo, StefanoA Tower Weak Gravity Conjecture from Infrared ConsistencyString Phenomenology 2019Conferences & Workshops<!--HTML-->We analyze infrared consistency conditions of 3D and 4D effective field theories with massive scalars or fermions charged under multiple U(1) gauge fields. At low energies, one can integrate out the massive particles and thus obtain a one-loop effective action for the gauge fields. In the regime where charge-independent contributions to higher-derivative terms in the action are sufficiently small, it is then possible to derive constraints on the charge-to-mass ratios of the massive particles from requiring that photons propagate causally and have an analytic S-matrix. We thus find that the theories need to contain bifundamentals other than satisfying the convex-hull condition. Demanding self-consistency of the constraints under Kaluza-Klein compactification, we show that, for scalars, they imply a stronger version of the weak gravity conjecture in which the charge-to-mass ratios of an infinite tower of particles are bounded from below. We find that the tower must again include bifundamentals but does not necessarily have to occupy a charge (sub-)lattice.oai:cds.cern.ch:26805762019
spellingShingle Conferences & Workshops
Andriolo, Stefano
A Tower Weak Gravity Conjecture from Infrared Consistency
title A Tower Weak Gravity Conjecture from Infrared Consistency
title_full A Tower Weak Gravity Conjecture from Infrared Consistency
title_fullStr A Tower Weak Gravity Conjecture from Infrared Consistency
title_full_unstemmed A Tower Weak Gravity Conjecture from Infrared Consistency
title_short A Tower Weak Gravity Conjecture from Infrared Consistency
title_sort tower weak gravity conjecture from infrared consistency
topic Conferences & Workshops
url http://cds.cern.ch/record/2680576
work_keys_str_mv AT andriolostefano atowerweakgravityconjecturefrominfraredconsistency
AT andriolostefano stringphenomenology2019
AT andriolostefano towerweakgravityconjecturefrominfraredconsistency