Portals into Higgs vacuum stability
Abstract
We address the notorious metastability of the standard model (SM) and promote it to a model building task: What are the new ingredients required to stabilize the SM up to the Planck scale without encountering subplanckian Landau poles? Using the SM extended by vector-like fermions (VLFs), we chart out the corresponding landscape of Higgs stability. We find that the gauge portal mechanism, triggered by new SM charge carriers, opens up sizeable room for stability in a minimally invasive manner. We also find models with Higgs criticality, and Yukawa portals opening up at stronger coupling. Several models allow for VLFs in the TeV-range, which can be searched for at the LHC. For nontrivial flavor structure severe flavor-changing neutral current constraints arise which complement those from stability, and push lower fermion masses up to .
Cite
@article{arxiv.2207.07737,
title = {Portals into Higgs vacuum stability},
author = {Gudrun Hiller and Tim Höhne and Daniel F. Litim and Tom Steudtner},
journal= {arXiv preprint arXiv:2207.07737},
year = {2022}
}
Comments
18 pages, 16 figures. v2: match published version