Strong Planck constraints on braneworld and non-commutative inflation
Abstract
We place observational likelihood constraints on braneworld and non-commutative inflation for a number of inflaton potentials, using Planck, WMAP polarization and BAO data. Both braneworld and non-commutative scenarios of the kind considered here are limited by the most recent data even more severely than standard general-relativity models. At more than 95 % confidence level, the monomial potential is ruled out for in the Randall--Sundrum (RS) braneworld cosmology and, for , also in the high-curvature limit of the Gauss--Bonnet (GB) braneworld and in the infrared limit of non-commutative inflation, due to a large scalar spectral index. Some parameter values for natural inflation, small-varying inflaton models and Starobinsky inflation are allowed in all scenarios, although some tuning is required for natural inflation in a non-commutative spacetime.
Keywords
Cite
@article{arxiv.1310.5186,
title = {Strong Planck constraints on braneworld and non-commutative inflation},
author = {Gianluca Calcagni and Sachiko Kuroyanagi and Junko Ohashi and Shinji Tsujikawa},
journal= {arXiv preprint arXiv:1310.5186},
year = {2014}
}
Comments
24 pages, 12 figures