On the phase structure of massless many-flavour QCD with staggered fermions
Abstract
When the number of massless fermions exceeds a critical value , QCD enters the conformal window and becomes chirally symmetric already in the vacuum. Determining from lattice simulations is challenging, since calculations are performed at finite lattice spacing, quark mass, and temporal lattice size, where both a thermal transition and an unphysical bulk transition obscure the conformal behaviour. In this work, we present results on the chiral phase boundaries in the bare lattice parameter space of unimproved staggered fermions. Our analysis indicates that the chiral transition in continuum QCD is of second order for all up to the onset of the conformal window. By systematically studying the thermal chiral transition and its interplay with the bulk transition, we obtain a coherent picture of the lattice phase structure and suggest how the onset of the conformal window can be identified from simulations performed away from the chiral and continuum limits.
Keywords
Cite
@article{arxiv.2603.20099,
title = {On the phase structure of massless many-flavour QCD with staggered fermions},
author = {Jan Philipp Klinger and Reinhold Kaiser and Owe Philipsen and Jonas Schaible},
journal= {arXiv preprint arXiv:2603.20099},
year = {2026}
}
Comments
10 pages, Talk at the 42th International Symposium on Lattice Field Theory (Lattice2025)