English

The imaginary part of the heavy-quark potential from real-time Yang-Mills dynamics

High Energy Physics - Phenomenology 2021-10-26 v2 High Energy Physics - Lattice Nuclear Theory

Abstract

We extract the imaginary part of the heavy-quark potential using classical-statistical simulations of real-time Yang-Mills dynamics in classical thermal equilibrium. The rr-dependence of the imaginary part of the potential is extracted by measuring the temporal decay of Wilson loops of spatial length rr. We compare our results to continuum expressions obtained using hard thermal loop theory and to semi-analytic lattice perturbation theory calculations using the hard classical loop formalism. We find that, when plotted as a function of mDrm_D r, where mDm_D is the hard classical loop Debye mass, the imaginary part of the heavy-quark potential shows little sensitivity to the lattice spacing at small mDr1m_D r \lesssim 1 and agrees well with the semi-analytic hard classical loop result. For large quark-antiquark separations, we quantify the magnitude of the non-perturbative long-range corrections to the imaginary part of the heavy-quark potential. We present our results for a wide range of temperatures, lattice spacings, and lattice volumes. This work sets the stage for extracting the imaginary part of the heavy-quark potential in an expanding non-equilibrium Yang Mills plasma.

Keywords

Cite

@article{arxiv.2102.12587,
  title  = {The imaginary part of the heavy-quark potential from real-time Yang-Mills dynamics},
  author = {Kirill Boguslavski and Babak S. Kasmaei and Michael Strickland},
  journal= {arXiv preprint arXiv:2102.12587},
  year   = {2021}
}

Comments

25 pages, 9 figures, 1 table; v2 - major revision, published version