Reconciling spontaneous scalarization with cosmology

Timothy Anson, Eugeny Babichev, and Sabir Ramazanov
Phys. Rev. D 100, 104051 – Published 26 November 2019

Abstract

We discuss the Damour–Esposito-Farèse model of gravity, which predicts the spontaneous scalarization of neutron stars in a certain range of parameter space. In the cosmological setup, the scalar field responsible for scalarization is subject to a tachyonic instability during inflation and the matter domination stage, resulting in a large value of the field today. This value feeds into the parametrized post-Newtonian parameters, which turn out to be in gross conflict with the solar system measurements. We modify the original Damour–Esposito-Farèse model by coupling the scalar to the inflaton field. This coupling acts as an effective mass for the scalar during inflation. For generic couplings that are not extremely small, the scalar (including its perturbations) relaxes to zero with an exponential accuracy by the beginning of the hot stage. While the scalar exhibits growth during the subsequent cosmological stages, the resulting present value remains very small—in a comfortable agreement with the solar system tests.

  • Received 6 June 2019

DOI:https://doi.org/10.1103/PhysRevD.100.104051

© 2019 American Physical Society

Physics Subject Headings (PhySH)

Gravitation, Cosmology & Astrophysics

Authors & Affiliations

Timothy Anson1, Eugeny Babichev1,2, and Sabir Ramazanov3

  • 1Laboratoire de Physique Théorique, CNRS, Univ. Paris-Sud, Université Paris-Saclay, 91405 Orsay, France
  • 2Sorbonne Université, CNRS, UMR7095, Institut d’Astrophysique de Paris, 𝒢ℝϵℂ𝒪, 98bis boulevard Arago, F-75014 Paris, France
  • 3CEICO, Institute of Physics of the Czech Academy of Sciences, Na Slovance 1999/2, 182 21 Prague 8, Czech Republic

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Issue

Vol. 100, Iss. 10 — 15 November 2019

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