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The cosmological Higgstory of the vacuum instability

The Standard Model Higgs potential becomes unstable at large field values. After clarifying the issue of gauge dependence of the effective potential, we study the cosmological evolution of the Higgs field in presence of this instability throughout inflation, reheating and the present epoch. We concl...

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Autores principales: Espinosa, Jose R., Giudice, Gian F., Morgante, Enrico, Riotto, Antonio, Senatore, Leonardo, Strumia, Alessandro, Tetradis, Nikolaos
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP09(2015)174
http://cds.cern.ch/record/2017463
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author Espinosa, Jose R.
Giudice, Gian F.
Morgante, Enrico
Riotto, Antonio
Senatore, Leonardo
Strumia, Alessandro
Tetradis, Nikolaos
author_facet Espinosa, Jose R.
Giudice, Gian F.
Morgante, Enrico
Riotto, Antonio
Senatore, Leonardo
Strumia, Alessandro
Tetradis, Nikolaos
author_sort Espinosa, Jose R.
collection CERN
description The Standard Model Higgs potential becomes unstable at large field values. After clarifying the issue of gauge dependence of the effective potential, we study the cosmological evolution of the Higgs field in presence of this instability throughout inflation, reheating and the present epoch. We conclude that anti-de Sitter patches in which the Higgs field lies at its true vacuum are lethal for our universe. From this result, we derive upper bounds on the Hubble constant during inflation, which depend on the reheating temperature and on the Higgs coupling to the scalar curvature or to the inflaton. Finally we study how a speculative link between Higgs meta-stability and consistence of quantum gravity leads to a sharp prediction for the Higgs and top masses, which is consistent with measured values.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-20174632022-08-10T12:57:05Zdoi:10.1007/JHEP09(2015)174http://cds.cern.ch/record/2017463engEspinosa, Jose R.Giudice, Gian F.Morgante, EnricoRiotto, AntonioSenatore, LeonardoStrumia, AlessandroTetradis, NikolaosThe cosmological Higgstory of the vacuum instabilityParticle Physics - PhenomenologyThe Standard Model Higgs potential becomes unstable at large field values. After clarifying the issue of gauge dependence of the effective potential, we study the cosmological evolution of the Higgs field in presence of this instability throughout inflation, reheating and the present epoch. We conclude that anti-de Sitter patches in which the Higgs field lies at its true vacuum are lethal for our universe. From this result, we derive upper bounds on the Hubble constant during inflation, which depend on the reheating temperature and on the Higgs coupling to the scalar curvature or to the inflaton. Finally we study how a speculative link between Higgs meta-stability and consistence of quantum gravity leads to a sharp prediction for the Higgs and top masses, which is consistent with measured values.The Standard Model Higgs potential becomes unstable at large field values. After clarifying the issue of gauge dependence of the effective potential, we study the cosmological evolution of the Higgs field in presence of this instability throughout inflation, reheating and the present epoch. We conclude that anti-de Sitter patches in which the Higgs field lies at its true vacuum are lethal for our universe. From this result, we derive upper bounds on the Hubble constant during inflation, which depend on the reheating temperature and on the Higgs coupling to the scalar curvature or to the inflaton. Finally we study how a speculative link between Higgs meta-stability and consistence of quantum gravity leads to a sharp prediction for the Higgs and top masses, which is consistent with measured values.The Standard Model Higgs potential becomes unstable at large field values. After clarifying the issue of gauge dependence of the effective potential, we study the cosmological evolution of the Higgs field in presence of this instability throughout inflation, reheating and the present epoch. We conclude that anti-de Sitter patches in which the Higgs field lies at its true vacuum are lethal for our universe. From this result, we derive upper bounds on the Hubble constant during inflation, which depend on the reheating temperature and on the Higgs coupling to the scalar curvature or to the inflaton. Finally we study how a speculative link between Higgs meta-stability and consistence of quantum gravity leads to a sharp prediction for the Higgs and top masses, which is consistent with measured values.arXiv:1505.04825CERN-PH-TH-2015-119CERN-PH-TH-2015-119IFUP-TH-2015oai:cds.cern.ch:20174632015-05-18
spellingShingle Particle Physics - Phenomenology
Espinosa, Jose R.
Giudice, Gian F.
Morgante, Enrico
Riotto, Antonio
Senatore, Leonardo
Strumia, Alessandro
Tetradis, Nikolaos
The cosmological Higgstory of the vacuum instability
title The cosmological Higgstory of the vacuum instability
title_full The cosmological Higgstory of the vacuum instability
title_fullStr The cosmological Higgstory of the vacuum instability
title_full_unstemmed The cosmological Higgstory of the vacuum instability
title_short The cosmological Higgstory of the vacuum instability
title_sort cosmological higgstory of the vacuum instability
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP09(2015)174
http://cds.cern.ch/record/2017463
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