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  • Letter

Rapid transition of Geff at zt≃0.01 as a possible solution of the Hubble and growth tensions

Valerio Marra1,2,3,* and Leandros Perivolaropoulos4,†

  • 1Núcleo de Astrofísica e Cosmologia & Departamento de Física, Universidade Federal do Espírito Santo, 29075-910 Vitória, ES, Brazil
  • 2INAF—Osservatorio Astronomico di Trieste, via Tiepolo 11, 34131 Trieste, Italy
  • 3IFPU—Institute for Fundamental Physics of the Universe, via Beirut 2, 34151 Trieste, Italy
  • 4Department of Physics, University of Ioannina, GR-45110 Ioannina, Greece

  • *valerio.marra@me.com
  • †leandros@uoi.gr

Phys. Rev. D 104, L021303 – Published 16 July, 2021

DOI: https://doi.org/10.1103/PhysRevD.104.L021303

Abstract

The mismatch in the value of the Hubble constant from low- and high-redshift observations may be recast as a discrepancy between the low- and high-redshift determinations of the luminosity of Type Ia supernovae, the latter featuring an absolute magnitude which is ≈0.2  mag lower. Here, we propose that a rapid transition in the value of the relative effective gravitational constant μG≡GeffGN at zt≃0.01 could explain the lower luminosity (higher magnitude) of local supernovae, thus solving the H0 crisis. In other words, here the tension is solved by featuring a transition at the perturbative rather than background level. A model that features μG=1 for z≲0.01 but μG≃0.9 for z≳0.01 is trivially consistent with local gravitational constraints but would raise the Chandrasekhar mass and so decrease the absolute magnitude of type Ia supernovae at z≳0.01 by the required value of ≈0.2  mag. Such a rapid transition of the effective gravitational constant would not only resolve the Hubble tension but it would also help resolve the growth tension as it would reduce the growth of density perturbations without affecting the Planck/ΛCDM background expansion.

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