English

Confining strings in three-dimensional gauge theories beyond the Nambu--Got\=o approximation

High Energy Physics - Lattice 2024-09-04 v1 High Energy Physics - Theory

Abstract

We carry out a systematic study of the effective bosonic string describing confining flux tubes in SU(N)\mathrm{SU}(N) Yang--Mills theories in three spacetime dimensions. While their low-energy properties are known to be universal and are described well by the Nambu--Got\=o action, a non-trivial dependence on the gauge group is encoded in a series of undetermined subleading corrections in an expansion around the limit of an arbitrarily long string. We quantify the first two of these corrections by means of high-precision Monte Carlo simulations of Polyakov-loop correlators in the lattice regularization. We compare the results of novel lattice simulations for theories with N=3N=3 and 66 color charges, and report an improved estimate for the N=2N=2 case, discussing the approach to the large-NN limit. Our results are compatible with analytical bounds derived from the S-matrix bootstrap approach. In addition, we also present a new test of the Svetitsky--Yaffe conjecture for the SU(3)\mathrm{SU}(3) theory in three dimensions, finding that the lattice results for the Polyakov-loop correlation function are in excellent agreement with the predictions of the Svetitsky--Yaffe mapping, which are worked out quantitatively applying conformal perturbation theory to the three-state Potts model in two dimensions. The implications of these results are discussed.

Keywords

Cite

@article{arxiv.2407.10678,
  title  = {Confining strings in three-dimensional gauge theories beyond the Nambu--Got\=o approximation},
  author = {Michele Caselle and Nicodemo Magnoli and Alessandro Nada and Marco Panero and Dario Panfalone and Lorenzo Verzichelli},
  journal= {arXiv preprint arXiv:2407.10678},
  year   = {2024}
}

Comments

35 pages, 14 figures, 17 tables

R2 v1 2026-06-28T17:41:07.686Z