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A Grand-Unified Nelson-Barr Model

We argue that the Nelson–Barr solution to the Strong CP Problem can be naturally realized in an E$_6$ grand-unified theory. The chiral SM fermions reside in three generations of E$_6$ fundamentals together with heavy vectorlike down quarks, leptons doublets and right-handed neutrinos. CP is imposed...

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Detalles Bibliográficos
Autores principales: Schwichtenberg, Jakob, Tremper, Paul, Ziegler, Robert
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjc/s10052-018-6388-6
http://cds.cern.ch/record/2305786
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author Schwichtenberg, Jakob
Tremper, Paul
Ziegler, Robert
author_facet Schwichtenberg, Jakob
Tremper, Paul
Ziegler, Robert
author_sort Schwichtenberg, Jakob
collection CERN
description We argue that the Nelson–Barr solution to the Strong CP Problem can be naturally realized in an E$_6$ grand-unified theory. The chiral SM fermions reside in three generations of E$_6$ fundamentals together with heavy vectorlike down quarks, leptons doublets and right-handed neutrinos. CP is imposed on the Lagrangian and broken only spontaneously at high scales, leading to a mixing between chiral and vectorlike fields that allows to solve the Strong CP Problem through the Nelson–Barr mechanism. The main benefit of the E$_6$ GUT structure is the predictivity in the SM fermion sector, and a perfect fit to all SM observables can be obtained despite being over-constrained. Definite predictions are made for the neutrino sector, with a Dirac CP phase that is correlated to the CKM phase, allowing to test this model in the near future.
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publishDate 2018
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spelling cern-23057862021-11-13T12:12:45Zdoi:10.1140/epjc/s10052-018-6388-6http://cds.cern.ch/record/2305786engSchwichtenberg, JakobTremper, PaulZiegler, RobertA Grand-Unified Nelson-Barr Modelhep-phParticle Physics - PhenomenologyWe argue that the Nelson–Barr solution to the Strong CP Problem can be naturally realized in an E$_6$ grand-unified theory. The chiral SM fermions reside in three generations of E$_6$ fundamentals together with heavy vectorlike down quarks, leptons doublets and right-handed neutrinos. CP is imposed on the Lagrangian and broken only spontaneously at high scales, leading to a mixing between chiral and vectorlike fields that allows to solve the Strong CP Problem through the Nelson–Barr mechanism. The main benefit of the E$_6$ GUT structure is the predictivity in the SM fermion sector, and a perfect fit to all SM observables can be obtained despite being over-constrained. Definite predictions are made for the neutrino sector, with a Dirac CP phase that is correlated to the CKM phase, allowing to test this model in the near future.We argue that the Nelson-Barr solution to the Strong CP Problem can be naturally realized in an E$_6$ Grand-Unified Theory. The chiral SM fermions reside in three generations of E$_6$ fundamentals together with heavy vectorlike down quarks, leptons doublets and right-handed neutrinos. CP is imposed on the Lagrangian and broken only spontaneously at high scales, leading to a mixing between chiral and vectorlike fields that allows to solve the Strong CP Problem through the Nelson-Barr mechanism. The main benefit of the E$_6$ GUT structure is the predictivity in the SM fermion sector, and a perfect fit to all SM observables can be obtained despite being over-constrained. Definite predictions are made for the neutrino sector, with a Dirac CP phase that is correlated to the CKM phase, allowing to test this model in the near future.arXiv:1802.08109CERN-TH-2018-036TTP18-012oai:cds.cern.ch:23057862018-02-22
spellingShingle hep-ph
Particle Physics - Phenomenology
Schwichtenberg, Jakob
Tremper, Paul
Ziegler, Robert
A Grand-Unified Nelson-Barr Model
title A Grand-Unified Nelson-Barr Model
title_full A Grand-Unified Nelson-Barr Model
title_fullStr A Grand-Unified Nelson-Barr Model
title_full_unstemmed A Grand-Unified Nelson-Barr Model
title_short A Grand-Unified Nelson-Barr Model
title_sort grand-unified nelson-barr model
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1140/epjc/s10052-018-6388-6
http://cds.cern.ch/record/2305786
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