Prediction for Maximum Supercooling in SU(N) Confinement Transition
Abstract
The thermal confinement phase transition (PT) in Yang-Mills theory is first-order for , with bounce action scaling as . Remarkably, lattice data for the action include a small coefficient whose presence likely strongly alters the PT dynamics. We give evidence, utilizing insights from softly-broken SUSY YM models, that the small coefficient originates from a deconfined phase instability just below the critical temperature. We predict the maximum achievable supercooling in theories to be a few percent, which can be tested on the lattice. We briefly discuss the potentially significant suppression of the associated cosmological gravitational wave signals.
Cite
@article{arxiv.2508.10091,
title = {Prediction for Maximum Supercooling in SU(N) Confinement Transition},
author = {Prateek Agrawal and Gaurang Ramakant Kane and Vazha Loladze and John March-Russell},
journal= {arXiv preprint arXiv:2508.10091},
year = {2026}
}
Comments
Supplemental material added along with some additional details in the text. Journal accepted version