arXiv:2302.00376·v1·High Energy Physics — Lattice
Boundary states and Non-Abelian Casimir effect in lattice Yang-Mills theory
Maxim N. Chernodub🇫🇷 · Vladimir A. Goy🇷🇺 · Alexander V. Molochkov🇷🇺 · Alexey S. Tanashkin🇷🇺
Abstract
Using first-principle numerical simulations, we investigate the Casimir effect in zero-temperature SU(3) lattice gauge theory in 3+1 spacetime dimensions. The Casimir interaction between perfect chromometallic mirrors reveals the presence of a new gluonic state with the mass which is substantially lighter than the groundstate glueball. We call this excitation ``glueton'' interpreting it as a non-perturbative colorless state of gluons bound to their negatively colored images in the chromometallic mirror. The glueton is a gluonic counterpart of a surface electron-hole exciton in semiconductors. We also show that a heavy quark is attracted to the neutral chromometallic mirror, thus supporting the existence of a ``quarkiton'' (a ``quark exciton'') colorless state in QCD, which is formed by a single quark with its anti-quark image in the chromometallic mirror. Analogies with edge modes in topological insulators and boundary states of fractional vortices in multi-component condensates are highlighted.
Comments: 8 pages, 4 figures