English

Modified Starobinsky inflation by the $R\ln\left( \square\right) R$ term

General Relativity and Quantum Cosmology 2023-01-27 v3 Cosmology and Nongalactic Astrophysics

Abstract

In the context of effective theories of gravity, a minimalist bottom-up approach which takes into account 11-loop quantum corrections leads to modifications in the Einstein-Hilbert action through the inclusion of four extra terms: R2R^{2}, CκραβCκραβC_{\kappa\rho\alpha\beta}C^{\kappa\rho\alpha\beta}, Rln()RR\ln\left( \square\right) R and Cκραβln()CκραβC_{\kappa\rho\alpha\beta}\ln\left( \square\right) C^{\kappa\rho\alpha\beta}. The first two terms are necessary to guarantee the renormalizability of the gravitational theory, and the last two terms (nonlocal terms) arise from the integration of massless/light matter fields. This work aims to analyze how one of the nonlocal terms, namely Rln()RR\ln\left( \square\right) R, affects the Starobinsky inflation. We consider the nonlocal term as a small correction to the R2R^{2} term, and we demonstrate that the model behaves like a local model in this context. In addition, we show that the approximate model in the Einstein frame is described by a canonical scalar field minimally coupled to general relativity. Finally, we study the inflationary regime of this model and constrain its free parameters through observations of CMB anisotropies.

Keywords

Cite

@article{arxiv.2202.13308,
  title  = {Modified Starobinsky inflation by the $R\ln\left( \square\right) R$ term},
  author = {J. Bezerra-Sobrinho and L. G. Medeiros},
  journal= {arXiv preprint arXiv:2202.13308},
  year   = {2023}
}

Comments

22 pages, 3 figures; v3: matches the published version