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Sliding Naturalness: Cosmological Selection of the Weak Scale

We present a cosmological solution to the electroweak hierarchy problem. After discussing general features of cosmological approaches to naturalness, we extend the Standard Model with two light scalars very weakly coupled to the Higgs and present the mechanism, which we recently introduced in a comp...

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Detalles Bibliográficos
Autores principales: Tito D'Agnolo, Raffaele, Teresi, Daniele
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP02(2022)023
http://cds.cern.ch/record/2782566
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author Tito D'Agnolo, Raffaele
Teresi, Daniele
author_facet Tito D'Agnolo, Raffaele
Teresi, Daniele
author_sort Tito D'Agnolo, Raffaele
collection CERN
description We present a cosmological solution to the electroweak hierarchy problem. After discussing general features of cosmological approaches to naturalness, we extend the Standard Model with two light scalars very weakly coupled to the Higgs and present the mechanism, which we recently introduced in a companion paper to explain jointly the electroweak hierarchy and the strong-CP problem. In this work we show that this solution can be decoupled from the strong-CP problem and discuss its possible implementations and phenomenology. The mechanism works with any standard inflationary sector, it does not require weak-scale inflation or a large number of e-folds, and does not introduce ambiguities related to eternal inflation. The cutoff of the theory can be as large as the Planck scale, both for the Cosmological Constant and for the Higgs sector. Reproducing the observed dark matter relic density fixes the couplings of the two new scalars to the Standard Model, offering a target to future axion or fifth force searches. Depending on the specific interaction of the scalars with the Standard Model, the mechanism either yields rich phenomenology at colliders or provides a novel joint solution to the strong-CP problem. We highlight what predictions are common to most realizations of cosmological selection of the weak scale and will allow to test this general framework in the near future.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-27825662023-10-04T06:38:45Zdoi:10.1007/JHEP02(2022)023doi:10.1007/JHEP02(2022)023http://cds.cern.ch/record/2782566engTito D'Agnolo, RaffaeleTeresi, DanieleSliding Naturalness: Cosmological Selection of the Weak ScaleParticle Physics - PhenomenologyAstrophysics and AstronomyParticle Physics - ExperimentParticle Physics - TheoryWe present a cosmological solution to the electroweak hierarchy problem. After discussing general features of cosmological approaches to naturalness, we extend the Standard Model with two light scalars very weakly coupled to the Higgs and present the mechanism, which we recently introduced in a companion paper to explain jointly the electroweak hierarchy and the strong-CP problem. In this work we show that this solution can be decoupled from the strong-CP problem and discuss its possible implementations and phenomenology. The mechanism works with any standard inflationary sector, it does not require weak-scale inflation or a large number of e-folds, and does not introduce ambiguities related to eternal inflation. The cutoff of the theory can be as large as the Planck scale, both for the Cosmological Constant and for the Higgs sector. Reproducing the observed dark matter relic density fixes the couplings of the two new scalars to the Standard Model, offering a target to future axion or fifth force searches. Depending on the specific interaction of the scalars with the Standard Model, the mechanism either yields rich phenomenology at colliders or provides a novel joint solution to the strong-CP problem. We highlight what predictions are common to most realizations of cosmological selection of the weak scale and will allow to test this general framework in the near future.We present a cosmological solution to the electroweak hierarchy problem. After discussing general features of cosmological approaches to naturalness, we extend the Standard Model with two light scalars very weakly coupled to the Higgs and present the mechanism, which we recently introduced in a companion paper to explain jointly the electroweak hierarchy and the strong-CP problem. In this work we show that this solution can be decoupled from the strong-CP problem and discuss its possible implementations and phenomenology. The mechanism works with any standard inflationary sector, it does not require weak-scale inflation or a large number of e-folds, and does not introduce ambiguities related to eternal inflation. The cutoff of the theory can be as large as the Planck scale, both for the Cosmological Constant and for the Higgs sector. Reproducing the observed dark matter relic density fixes the couplings of the two new scalars to the Standard Model, offering a target to future axion or fifth force searches. Depending on the specific interaction of the scalars with the Standard Model, the mechanism either yields rich phenomenology at colliders or provides a novel joint solution to the strong-CP problem. We highlight what predictions are common to most realizations of cosmological selection of the weak scale and will allow to test this general framework in the near future.arXiv:2109.13249CERN-TH-2021-138oai:cds.cern.ch:27825662021-09-27
spellingShingle Particle Physics - Phenomenology
Astrophysics and Astronomy
Particle Physics - Experiment
Particle Physics - Theory
Tito D'Agnolo, Raffaele
Teresi, Daniele
Sliding Naturalness: Cosmological Selection of the Weak Scale
title Sliding Naturalness: Cosmological Selection of the Weak Scale
title_full Sliding Naturalness: Cosmological Selection of the Weak Scale
title_fullStr Sliding Naturalness: Cosmological Selection of the Weak Scale
title_full_unstemmed Sliding Naturalness: Cosmological Selection of the Weak Scale
title_short Sliding Naturalness: Cosmological Selection of the Weak Scale
title_sort sliding naturalness: cosmological selection of the weak scale
topic Particle Physics - Phenomenology
Astrophysics and Astronomy
Particle Physics - Experiment
Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP02(2022)023
https://dx.doi.org/10.1007/JHEP02(2022)023
http://cds.cern.ch/record/2782566
work_keys_str_mv AT titodagnoloraffaele slidingnaturalnesscosmologicalselectionoftheweakscale
AT teresidaniele slidingnaturalnesscosmologicalselectionoftheweakscale