arXiv:2607.26132·v1·High Energy Physics — Lattice
Quantum Phase Diagram of the D Untruncated SU Lattice Gauge Theory with Dynamical Fermions
Gabriel Rouxinol🇩🇪 · Julian Bender🇺🇸 · Patrick Emonts🇩🇪 · Michele Grossi🇨🇭 · Jad C. Halimeh🇩🇪
Abstract
Non-Abelian gauge theories with dynamical matter govern the strong interaction and a broad class of strongly correlated quantum systems, yet their ground-state properties remain difficult to obtain from first principles. Using a continuous-group variational Monte Carlo approach that retains the full SU gauge field without truncation, we determine the ground-state behavior of the SU lattice gauge theory with staggered fermions on an square lattice. Treating the magnetic and electric couplings and independently, we find a magnetic-flux transition at , with no resolvable drift of the transition point as the electric coupling is varied. Along the physical coupling line , for , we uncover a gauge-matter delocalization crossover from a flux-disordered regime at strong electric coupling to an ordered unity-flux regime at weak coupling. The chiral condensate, a gauge-invariant Wilson-line meson correlator, and the local color density consistently reveal the emergence of coherent gauge-assisted matter dynamics. Together, these results provide a unified physical picture of how magnetic-flux ordering and fermionic coherence develop in an untruncated non-Abelian lattice gauge theory.
Comments: 8+3 pages, 3+3 figures