English

Reconstructing the inflationary $f(R)$ from observations

General Relativity and Quantum Cosmology 2014-08-07 v4 Cosmology and Nongalactic Astrophysics High Energy Physics - Theory

Abstract

The BICEP2 collaboration has recently released data showing that the scalar-to-tensor ratio rr is much larger than expected. The immediate consequence, in the context of f(R)f(R) gravity, is that the Starobinsky model of inflation is ruled out since it predicts a value of rr much smaller than what is observed. Of course, the BICEP2 data need verification, especially from Planck with which there is some tension, therefore any conclusion seems premature. However, it is interesting to ask what would be the functional form of f(R)f(R) in the case when the value of rr is different from the one predicted by the Starobinsky model. In this paper, we show how to determine the form of f(R)f(R), once the slow-roll parameters are known with some accuracy. The striking result is that, for given values of the scalar spectral index nSn_{S} and rr, the effective Lagrangian has the form f(R)=Rζf(R)=R^{\zeta}, where ζ=2ε\zeta=2-\varepsilon and ε1|\varepsilon|\ll 1. Therefore, it appears that the inflationary phase of the Universe is best described by a R2R^{2} theory, with a small deviation that, as we show, can be obtained by quantum corrections.

Keywords

Cite

@article{arxiv.1406.1096,
  title  = {Reconstructing the inflationary $f(R)$ from observations},
  author = {Massimiliano Rinaldi and Guido Cognola and Luciano Vanzo and Sergio Zerbini},
  journal= {arXiv preprint arXiv:1406.1096},
  year   = {2014}
}

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