Chaotic initial conditions for nonminimally coupled inflation via a conformal factor with a zero
Abstract
Nonminimally coupled inflation models based on a nonminimal coupling and a potential are in excellent agreement with the scalar spectral index observed by Planck. Here we consider the modification of these models by a conformal factor with a zero. This enables a nonminimally coupled model to have a Planck-scale potential energy density at large values of the inflaton field, which can account for the smooth, potential-dominated volume that is necessary for inflation to start. We show that models with a conformal factor zero generally predict a correlated increase of the spectral index and tensor-to-scalar ratio . For values of that are within the present bounds from Planck, modification by as large as 0.0013 is possible, which is large enough to be measured by next generation cosmic microwave background polarization satellites.
Keywords
Cite
@article{arxiv.1612.04730,
title = {Chaotic initial conditions for nonminimally coupled inflation via a conformal factor with a zero},
author = {Jinsu Kim and John McDonald},
journal= {arXiv preprint arXiv:1612.04730},
year = {2018}
}
Comments
v2: PRD published version