arXiv · 2112.10429
The chiral phase transition from strong to weak coupling
Abstract
The order of the chiral phase transition of lattice QCD with unimproved staggered fermions is known to depend on the number of quark flavours, their masses and the lattice spacing. Previous studies in the literature for $N_f \in \{ 3,4 \}$ show first-order transitions, which weaken with decreasing lattice spacing. Here we investigate what happens when lattices are made coarser to establish contact to the strong coupling region. For $N_f \in \{4,8 \}$ we find a drastic weakening of the transition when going from $N_{\tau}=4$ to $N_{\tau}=2$, which is consistent with a second-order chiral transition reported in the literature for $N_f=4$ in the strong coupling limit. This implies a non-monotonic behaviour of the critical quark or pseudo-scalar meson mass, which separates first-order transitions from crossover behaviour, as a function of lattice spacing.
Explore related subjects
Keep this discovery
Francesca Cuteri, Alfredo D'Ambrosio, Owe Philipsen, Alessandro Sciarra. 2021-12-20. The chiral phase transition from strong to weak coupling. https://arxiv.org/abs/2112.10429
Cite the original work for its findings. Save a collection to share your selection of sources.