Flux-tubes in three-dimensional lattice gauge theories
Abstract
Flux-tubes in different representations of SU(2) and U(1) lattice gauge theories in three dimensions are measured. Wilson loops generate heavy ``quark-antiquark'' pairs in fundamental (), adjoint (), and quartet () representations of SU(2). The first direct lattice measurements of the flux-tube cross-section as a function of representation are made. It is found that , to about 10\%. Results are consistent with a connection between the string tension and suggested by a simplified flux-tube model, [ is the gauge coupling], given that scales like the Casimir , as observed in previous lattice studies in both three and four dimensions. The results can discriminate among phenomenological models of the physics underlying confinement. Flux-tubes for singly- and doubly-charged Wilson loops in compact QED are also measured. It is found that the string tension scales as the squared-charge and the flux-tube cross-section is independent of charge to good approximation. These SU(2) and U(1) simulations lend some support, albeit indirectly, to a conjecture that the dual superconductor mechanism underlies confinement in compact gauge theories in both three and four dimensions.
Keywords
Cite
@article{arxiv.hep-lat/9303008,
title = {Flux-tubes in three-dimensional lattice gauge theories},
author = {Howard D. Trottier and R. M. Woloshyn},
journal= {arXiv preprint arXiv:hep-lat/9303008},
year = {2009}
}
Comments
15 pages (REVTEX 2.1). Figures: 11, not included (available by request from [email protected] by regular mail, postscript files, or one self-unpacking uuencoded file)