Sub-Planckian Two-Field Inflation Consistent with the Lyth Bound
Abstract
The BICEP2 observation of a large tensor-to-scalar ratio, , implies that the inflaton in single-field inflation models must satisfy in order to produce sufficient inflation. This is a problem if interaction terms suppressed by the Planck scale impose a bound . Here we consider whether it is possible to have successful sub-Planckian inflation in the case of two-field inflation. The trajectory in field space cannot be radial if the effective single-field inflaton is to satisfy the Lyth bound. By considering a complex field , we show that a near circular but aperiodic modulation of a potential can reproduce the results of chaotic inflation for and while satisfying throughout. More generally, for models based on a potential, the simplest sub-Planckian models are equivalent to and chaotic inflation.
Cite
@article{arxiv.1404.4620,
title = {Sub-Planckian Two-Field Inflation Consistent with the Lyth Bound},
author = {John McDonald},
journal= {arXiv preprint arXiv:1404.4620},
year = {2015}
}
Comments
7 pages, 2 figures. Some additional references and discussion. Version published in JCAP