Reconstructing inflationary potential from BICEP2 and running of tensor modes
Abstract
In this paper we will analyse the constraints on a sub-Planckian excursion of a single inflaton field, which would yield a large tensor to scalar ratio, while explaining the temperature anisotropy of the cosmic microwave background (CMB) radiation. In particular, our attempt will be to reconstruct the inflationary potential by constraining, and , in the vicinity of the field, , and the field displacement, , where is the reduced Planck mass. We will provide, for the first time, a set of new {\it consistency} relationships for sub-Planckian excursion of the inflaton field, which would help us to differentiate sub-versus-super Planckian models of inflation. For a generic single field inflationary potential, we will be able to put a stringent bound on the potential energy density: , where inflation can occur on the flat potential within, , for the following observational constraints: (Planck+WMAP-9+high L+BICEP2). We then provide a prediction for the spectral tilt (), running () and running of running () of the tensor modes within the window, , ,and , in a model independent way. We also provide a simple example of an {\it inflection-point} model of inflation and reconstruct the potential in a model independent way to match the current observations.
Keywords
Cite
@article{arxiv.1403.5549,
title = {Reconstructing inflationary potential from BICEP2 and running of tensor modes},
author = {Sayantan Choudhury and Anupam Mazumdar},
journal= {arXiv preprint arXiv:1403.5549},
year = {2014}
}
Comments
22 pages, 5 figures, A new set of consistency relationships have been added in the discussion, new citations added. arXiv admin note: text overlap with arXiv:1306.4496