Yang--Mills Glueballs as Closed Bosonic Strings
Abstract
We put forward the Axionic String Ansatz (ASA), which provides a unified description for the worldsheet dynamics of confining strings in pure Yang--Mills theory both in and space-time dimensions. The ASA is motivated by the excitation spectrum of long confining strings, as measured on a lattice, and by recently constructed integrable axionic non-critical string models. According to the ASA, pure gluodynamics in 3D is described by a non-critical bosonic string theory without any extra local worldsheet degrees of freedom. We argue that this assumption fixes the set of quantum numbers (spins, - and -parities) of almost all glueball states. We confront the resulting predictions with the properties of approximately lightest glueball states measured on a lattice and find a good agreement. On the other hand, the spectrum of low lying glueballs in 4D gluodynamics suggests the presence of a massive pseudoscalar mode on the string worldsheet, in agreement with the ASA and lattice data for long strings.
Keywords
Cite
@article{arxiv.1611.09796,
title = {Yang--Mills Glueballs as Closed Bosonic Strings},
author = {Sergei Dubovsky and Guzman Hernandez-Chifflet},
journal= {arXiv preprint arXiv:1611.09796},
year = {2017}
}
Comments
36 pages, 6 figures; v2: typos corrected, a few comments added