English

Stability of the cascading gauge theory de Sitter DFPs

High Energy Physics - Theory 2023-02-15 v1

Abstract

We study stability of the Dynamical Fixed Points (DFPs) of the cascading gauge theory at strong coupling in de Sitter space-time. We compute the spectra of the perturbative fluctuations and identify stable/unstable DFPs, characterized by the ratio of the strong coupling scale Λ\Lambda of the gauge theory and the Hubble constant HH of the background space-time. We discover a new phenomenon in the spectrum of gravitational fluctuations of a non-conformal holographic model: distinct branches of the fluctuations for HΛH\gg \Lambda coalesce for sufficiently low HΛ\frac{H}{\Lambda}, leading to the removal of some excited modes from the spectrum. We establish that, at least in a dual supergravity approximation, cascading gauge theory does not have a stable DFP for H(Hcrit1,Hcrit2)H\in (H_{crit_1},H_{crit_2}). Initial states of the theory for H>Hcrit2H>H_{crit_2} evolve to a stable DFP with unbroken chiral symmetry; while for H<Hcrit1H< H_{crit_1} the states evolve to a de Sitter vacuum with spontaneously broken chiral symmetry.

Keywords

Cite

@article{arxiv.2210.17380,
  title  = {Stability of the cascading gauge theory de Sitter DFPs},
  author = {Alex Buchel},
  journal= {arXiv preprint arXiv:2210.17380},
  year   = {2023}
}

Comments

90 pages, 14 figures