English

Lattice QCD study of color correlations between quarks in static multiquark systems

High Energy Physics - Lattice 2025-12-29 v1

Abstract

We study the color correlation between two static quarks in 3Q (QQQQQQ) and 4Q (QQQˉQˉQQ\bar Q\bar Q) multiquark systems at T=0T=0 based on the reduced two-body 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 two-body color density matrix ρ\rho of static quarks, and investigate the dependence of color correlations on the quarks' spatial configuration. As a result, we find that the color correlations depend on the minimal path length along a flux tube which connects two quarks under consideration. The color correlation between quarks quenches because of color leak into the gluon field (flux tube) and finally approaches the random color configuration in the large distance limit. We find a ``universality'' in the flux-tube path length dependence of the color leak for 2Q, 3Q, and 4Q ground-state systems.

Keywords

Cite

@article{arxiv.2512.21668,
  title  = {Lattice QCD study of color correlations between quarks in static multiquark systems},
  author = {Toru T. Takahashi and Yoshiko Kanada-En'yo},
  journal= {arXiv preprint arXiv:2512.21668},
  year   = {2025}
}

Comments

15 pages, 23 figures