Shift-symmetric Horndeski gravity in the asymptotic-safety paradigm

  • Astrid Eichhorn*
  • , Rafael R. Lino dos Santos
  • , Fabian Wagner
  • *Kontaktforfatter

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

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Abstract

Horndeski gravity is a popular contender for a phenomenological model of dynamical dark energy, and as such subject to observational constraints. In this work, we ask whether Horndeski gravity can be more than a phenomenological model and instead become a fundamental theory, which extends towards high energy scales and includes quantum effects. We find that within the asymptotic-safety paradigm, an ultraviolet completion of a simple class of models of Horndeski gravity is achievable, but places strong constraints on the couplings of the theory. These constraints are not compatible with dynamical dark energy. Further, we find a similar result in an effective-field theory approach to this class of models of Horndeski gravity: under the assumption that there is no new strongly-coupled physics below the Planck scale, quantum gravity fluctuations force the Horndeski couplings to be too small to achieve an explanation of dynamical dark energy.

OriginalsprogEngelsk
Artikelnummer052
TidsskriftJournal of Cosmology and Astroparticle Physics
Vol/bind2023
Udgave nummer2
Antal sider37
ISSN1475-7516
DOI
StatusUdgivet - 1. feb. 2023

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Publisher Copyright:
© 2023 The Author(s)

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  • Probing the quantum nature of gravity

    Eichhorn, A. (PI)

    Villum Fonden

    01/01/202031/12/2024

    Projekter: ProjektPrivate fonde

  • PhD

    Santos, R. R. L. (Ph.d.-studerende) & Eichhorn, A. (Vejleder)

    01/09/202031/08/2023

    Projekter: ProjektPh.d-projekt

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