Inflationary Parameters in Renormalization Group Improved $\phi^4$ Theory
Abstract
Inflation models can be examined by the cosmological observations, WMAP, Planck, BICEP2 and so on. These observations directly constrain the spectral index, , and the tensor-to-scalar ratio, . Besides, from a theoretical point of view, it has been shown that any inflation models asymptote a universal attractor in plane for a larger scalar-gravity coupling. In this work we consider a simple chaotic inflation model with a scalar quartic and a scalar-curvature interactions. The quantum corrections are introduced for these interactions through the renormalization group. The inflationary parameters, and , are numerically calculated with shifting the bare scalar-gravity coupling , the quartic scalar bare coupling , the renormalization scale and the e-folding number . The Planck data is consistent with the theory with a finite scalar-curvature coupling. It is found that the RG running induces a non-universal contribution for and . It can increase the tensor-to-scalar ratio, , which is consistent with Planck data so that it may approach the BICEP2 data for a small renormalization scale.
Cite
@article{arxiv.1408.1270,
title = {Inflationary Parameters in Renormalization Group Improved $\phi^4$ Theory},
author = {Tomohiro Inagaki and Ryota Nakanishi and Sergei D. Odintsov},
journal= {arXiv preprint arXiv:1408.1270},
year = {2015}
}
Comments
10 pages, 6 figures, Published version