The Higgs phase as a spin glass, and the transition between varieties of confinement
Abstract
We propose that the Higgs phase of a gauge Higgs theory is the phase of spontaneously broken custodial symmetry, and present a new gauge invariant order parameter for custodial symmetry breaking which is very closely analogous to the Edwards-Anderson order parameter for spin glasses. Custodial symmetry is a global symmetry acting on the Higgs field alone, and we show here that the spin glass transition in gauge Higgs theories, from a QCD-like phase to a Higgs phase of broken custodial symmetry, coincides with the transition between two distinct types of confinement. These are color confinement in the Higgs phase, and a stronger version of confinement, which we have termed "separation-of-charge" confinement, in the QCD-like phase.
Keywords
Cite
@article{arxiv.2001.03068,
title = {The Higgs phase as a spin glass, and the transition between varieties of confinement},
author = {Jeff Greensite and Kazue Matsuyama},
journal= {arXiv preprint arXiv:2001.03068},
year = {2020}
}
Comments
17 pages, 1 figure