Maximal Supersymmetry and B-Mode Targets
Abstract
Extending the work of Ferrara and one of the authors, we present dynamical cosmological models of -attractors with plateau potentials for . These models are motivated by geometric properties of maximally supersymmetric theories: M-theory, superstring theory, and maximal supergravity. After a consistent truncation of maximal to minimal supersymmetry in a seven-disk geometry, we perform a two-step procedure: 1) we introduce a superpotential, which stabilizes the moduli of the seven-disk geometry in a supersymmetric minimum, 2) we add a cosmological sector with a nilpotent stabilizer, which breaks supersymmetry spontaneously and leads to a desirable class of cosmological attractor models. These models with consistent with observational data, and with tensor-to-scalar ratio , provide natural targets for future B-mode searches. We relate the issue of stability of inflationary trajectories in these models to tessellations of a hyperbolic geometry.
Cite
@article{arxiv.1704.04829,
title = {Maximal Supersymmetry and B-Mode Targets},
author = {Renata Kallosh and Andrei Linde and Timm Wrase and Yusuke Yamada},
journal= {arXiv preprint arXiv:1704.04829},
year = {2017}
}
Comments
33 pages, 12 figures