Deconfinement transition and string tensions in SU(4) Yang-Mills Theory
Abstract
We present results from numerical lattice calculations of SU(4) Yang-Mills theory. This work has two goals: to determine the order of the finite temperature deconfinement transition on an lattice and to study the string tensions between static charges in the irreducible representations of SU(4). Motivated by Pisarski and Tytgat's argument that a second-order SU() deconfinement transition would explain some features of the SU(3) and QCD transitions, we confirm older results on a coarser, , lattice. We see a clear two-phase coexistence signal, characteristic of a first-order transition, at on a lattice, on which we also compute a latent heat of . Computing Polyakov loop correlation functions we calculate the string tension at finite temperature in the confined phase between fundamental charges, , between diquark charges, , and between adjoint charges . We find that , and our result for the adjoint string tension is consistent with string breaking.
Keywords
Cite
@article{arxiv.hep-lat/0006016,
title = {Deconfinement transition and string tensions in SU(4) Yang-Mills Theory},
author = {Matthew Wingate and Shigemi Ohta},
journal= {arXiv preprint arXiv:hep-lat/0006016},
year = {2009}
}
Comments
10 pages with included figures. For version 2: New calculation and discussion of latent heat added; 2 new figures and 1 new table. Typo in abstract corrected for v3. To appear in Physical Review D