Sphaleron rate of $N_f=2+1$ QCD
Abstract
We compute the sphaleron rate of QCD at the physical point for a range of temperatures MeV MeV. We adopt a strategy recently applied in the quenched case, based on the extraction of the rate via a modified version of the Backus-Gilbert method from finite-lattice-spacing and finite-smoothing-radius Euclidean topological charge density correlators. The physical sphaleron rate is finally computed by performing a continuum limit at fixed physical smoothing radius, followed by a zero-smoothing extrapolation. Dynamical fermions were discretized using the staggered formulation, which is known to yield large lattice artifacts for the topological susceptibility. However, we find them to be rather mild for the sphaleron rate.
Keywords
Cite
@article{arxiv.2308.01287,
title = {Sphaleron rate of $N_f=2+1$ QCD},
author = {Claudio Bonanno and Francesco D'Angelo and Massimo D'Elia and Lorenzo Maio and Manuel Naviglio},
journal= {arXiv preprint arXiv:2308.01287},
year = {2024}
}
Comments
Main text: 7 pages, 4 eps figures. Supplementary Material: 9 pages, 10 eps figures. v2: revised text, results unchanged. v3: minor revisions, matches accepted version on Phys. Rev. Lett