arXiv:2601.03843·v1·High Energy Physics — Lattice
Phases of the -deformed Yang-Mills theory at large
Tomoya Hayata🇯🇵 · Yoshimasa Hidaka🇯🇵 · Hiromasa Watanabe🇯🇵
Abstract
We investigate the -dimensional -deformed Yang-Mills theory in the lattice Hamiltonian formalism, which is characterized by three parameters: the number of colors , the coupling constant , and the level . By treating these as tunable parameters, we explore how key properties of the theory, such as confinement and topological order, emerge in different regimes. Employing a variational mean-field analysis that interpolates between the strong- and weak-coupling regimes, we determine the large- phase structure in terms of the 't Hooft coupling and the ratio . We find that the topologically ordered phase remains robust at large under appropriate scalings of these parameters. This result indicates that the continuum limit of large- gauge theory may be more intricate than naively expected, and motivates studies beyond the mean-field theory, both to achieve a further understanding of confinement in gauge theories and to guide quantum simulations of large- gauge theories.
Comments: 7+4 pages, 5+2 figures, 2+1 tables; analysis code will be made publicly available on GitHub after publication