Two-Field Analysis of No-Scale Supergravity Inflation
Abstract
Since the building-blocks of supersymmetric models include chiral superfields containing pairs of effective scalar fields, a two-field approach is particularly appropriate for models of inflation based on supergravity. In this paper, we generalize the two-field analysis of the inflationary power spectrum to supergravity models with arbitrary K\"ahler potential. We show how two-field effects in the context of no-scale supergravity can alter the model predictions for the scalar spectral index and the tensor-to-scalar ratio , yielding results that interpolate between the Planck-friendly Starobinsky model and BICEP2-friendly predictions. In particular, we show that two-field effects in a chaotic no-scale inflation model with a quadratic potential are capable of reducing to very small values . We also calculate the non-Gaussianity measure , finding that is well below the current experimental sensitivity.
Keywords
Cite
@article{arxiv.1409.8197,
title = {Two-Field Analysis of No-Scale Supergravity Inflation},
author = {John Ellis and Marcos A. G. Garcia and Dimitri V. Nanopoulos and Keith A. Olive},
journal= {arXiv preprint arXiv:1409.8197},
year = {2015}
}
Comments
33 pages, 14 figures