English

Slow-roll inflation from a geometric scalar-tensor model with self-interacting potentials

General Relativity and Quantum Cosmology 2024-11-11 v2

Abstract

We consider slow-roll inflation in the context of a modified Brans-Dicke dilaton gravity. From a two self-interacting potentials V(ϕ)V(\phi), we reproduce a Starobinsky-like potential and, commonly in syperstring models, an exponential tail potential V(ϕ)(1eα0ϕ)V(\phi)\sim(1-e^{\alpha_0\phi}), with α0\alpha_0 being a constant coefficient related to the Brans-Dicke parameter ω\omega. Using the observational bounds on the spectral index nsn_s and tensor-to-scalar ratio rr imposed by Planck-CMB baseline data and the BICEP2/Keck collaboration with combination with Planck 2018 and the Baryonic Acoustic Oscillations(BAO), we obtain for both models a good agreement with current observations with ns=0.9600.972n_s = 0.960 - 0.972 and r<0.02r<0.02. In addition, the resulting large values of ω\omega suggests a possible linkage of the inflationary regime and today's solar system bounds.

Keywords

Cite

@article{arxiv.2409.02975,
  title  = {Slow-roll inflation from a geometric scalar-tensor model with self-interacting potentials},
  author = {Abraão J. S. Capistrano and Gilberto M. Kremer},
  journal= {arXiv preprint arXiv:2409.02975},
  year   = {2024}
}

Comments

revised version, updated references

R2 v1 2026-06-28T18:34:27.962Z