Semi-Abelian gauge theories, non-invertible symmetries, and string tensions beyond -ality
arXiv:2101.02227 · doi:10.1007/JHEP03(2021)238
Abstract
We study a 3d lattice gauge theory with gauge group , which is obtained by gauging the global symmetry of a pure gauge theory, and we call it the semi-Abelian gauge theory. We compute mass gaps and string tensions for both theories using the monopole-gas description. We find that the effective potential receives equal contributions at leading order from monopoles associated with the entire root system. Even though the center symmetry of the semi-Abelian gauge theory is given by , we observe that the string tensions do not obey the -ality rule and carry more detailed information on the representations of the gauge group. We find that this refinement is due to the presence of non-invertible topological lines as a remnant of one-form symmetry in the original Abelian lattice theory. Upon adding charged particles corresponding to -bosons, such non-invertible symmetries are explicitly broken so that the -ality rule should emerge in the deep infrared regime.
31 pages, 2 figures. V2: typos corrected, discussions clarified. V3: minor changes
References in corpus (14)
- Generalized Global Symmetries
- Center-stabilized Yang-Mills theory: confinement and large volume independence
- Magnetic bion condensation: A new mechanism of confinement and mass gap in four dimensions
- Anomalies of discrete symmetries in three dimensions and group cohomology
- Fusion Category Symmetry I: Anomaly In-Flow and Gapped Phases
- Topological Defects on the Lattice: Dualities and Degeneracies
- Anomalies of discrete symmetries in various dimensions and group cohomology
- Vacuum structure of bifundamental gauge theories at finite topological angles
- Abelian gauge theories on the lattice: -terms and compact gauge theory with(out) monopoles
- Higher-form symmetries and 3-group in axion electrodynamics
- Fractional angle, 't Hooft anomaly, and quantum instantons in charge- multi-flavor Schwinger model
- The Bi-Fundamental Gauge Theory in 3+1 Dimensions: The Vacuum Structure and a Cascade
- Casimir Scaling and String Breaking in G(2) Gluodynamics
- Topological aspects of D Abelian lattice gauge theories with the parameter