English

Lattice QCD study of color correlations between static quarks with gluonic excitations

High Energy Physics - Lattice 2024-12-10 v2

Abstract

We study the color correlation between static quark and antiquark (qqˉq\bar q) that is accompanied by gluonic excitations in the confined phase at T=0T=0 by constructing reduced density matrices ρ\rho in color space. We perform quenched lattice QCD calculations with the Coulomb gauge adopting the standard Wilson gauge action, and the spatial volume is L3=323L^3 = 32^3 at β=5.8\beta = 5.8, which corresponds to the lattice spacing a=0.14a=0.14 fm and the system volume L3=4.53L^3=4.5^3 fm3^3. We evaluate the color density matrix ρ\rho of static qqˉq\bar q pairs in 6 channels (Σg+{\Sigma_g^+}, Σg+{{\Sigma_g^+}'}, Πu{\Pi_u}, Πu{\Pi_u'}, Δg{\Delta_g}, Δg{\Delta_g'}), and investigate the interquark-distance dependence of color correlations. We find that as the interquark distance increases, the color correlation quenches because of color leak into the gluon field and finally approaches the random color configuration in the qqˉq\bar q systems with and without gluonic excitations. For this color screening effect, we evaluate the "screening mass" to discuss its dependence on channels, the quantum number of the gluonic excitations.

Keywords

Cite

@article{arxiv.2411.13833,
  title  = {Lattice QCD study of color correlations between static quarks with gluonic excitations},
  author = {Toru T. Takahashi and Yoshiko Kanada-En'yo},
  journal= {arXiv preprint arXiv:2411.13833},
  year   = {2024}
}

Comments

9 pages, 12 figures