English

Thermal phase structure of dimensionally reduced super-Yang--Mills

High Energy Physics - Lattice 2023-04-11 v1 High Energy Physics - Theory

Abstract

We present our current results from ongoing lattice investigations of the Berenstein--Maldacena--Nastase deformation of maximally supersymmetric Yang--Mills quantum mechanics. We focus on the thermal phase structure of this theory, which depends on both the temperature TT and the deformation parameter μ\mu, through the dimensionless ratios T/μT / \mu and g=λ/μ3g = \lambda / \mu^3 with λ\lambda the 't Hooft coupling. We determine the critical T/μT / \mu of the confinement transition for couplings gg that span three orders of magnitude, to connect weak-coupling perturbative calculations and large-NN dual supergravity predictions in the strong-coupling limit. Analyzing multiple lattice sizes up to Nτ=24N_{\tau} = 24 and numbers of colors up to N=16N = 16 allows initial checks of the large-NN continuum limit.

Keywords

Cite

@article{arxiv.2201.03097,
  title  = {Thermal phase structure of dimensionally reduced super-Yang--Mills},
  author = {David Schaich and Raghav G. Jha and Anosh Joseph},
  journal= {arXiv preprint arXiv:2201.03097},
  year   = {2023}
}

Comments

Contribution to the proceedings of Lattice 2021, July 26--30, MIT