Higgs Inflation and the Electroweak Gauge Sector
Abstract
We introduce a new method that allows for the Higgs to be the inflaton. That is, we let the Higgs be a pseudo-Nambu-Goldstone (pNG) boson of a global coset symmetry that spontaneously breaks at an energy scale and give it a suitable Chern-Simons interaction, with the dimensionless Chern-Simons coupling strength and an decay constant. As a result, slow-roll inflation occurs via -induced friction down a steep sinusoidal potential. In order to obey electroweak symmetry, the lowest-order Chern-Simons interaction is required to be quadratic in the Higgs with coupling strength . Higher-order interaction terms keep the full Lagrangian nearly invariant under the approximate pNG shift symmetry. Employing the simplest symmetry coset , -folds of inflation occur when , with the weak isospin gauge coupling constant. Small values of the decay constant, , which are needed to address the Higgs hierarchy problem, are ruled out by electric dipole measurements and so successfully explaining inflation requires large . We discuss possible methods to achieve such large couplings and other alternative Higgs inflation scenarios outside the standard modified-gravity framework.
Keywords
Cite
@article{arxiv.2306.04671,
title = {Higgs Inflation and the Electroweak Gauge Sector},
author = {Stephon Alexander and Cyril Creque-Sarbinowski and Humberto Gilmer and Katherine Freese},
journal= {arXiv preprint arXiv:2306.04671},
year = {2023}
}
Comments
11 pages, including appendices, 4 figures