The spatial string tension and its effects on screening correlators in a thermal QCD plasma
Abstract
We calculate the spatial Wilson line correlator for 2+1 flavor QCD using highly improved staggered quark discretization for fermions and in quenched QCD for a wide range of temperatures, from the chiral crossover temperature MeV or the deconfinement temperature MeV respectively, up to GeV. Extracting the spatial string tension for different lattice cut-offs and by performing a continuum extrapolation of this observable, we show that the soft (magnetic) gluons interact non-perturbatively even at temperatures GeV. We provide incriminating evidences to demonstrate that dimensionally reduced effective theories can describe these soft quark and gluon quasi-particles for both quenched and flavor QCD, at temperatures . We also show for the first time the imprints of the non-perturbative pseudo-potential in the properties of mesonic screening masses for temperatures ranging from - GeV in the quark-gluon plasma.
Keywords
Cite
@article{arxiv.2501.17943,
title = {The spatial string tension and its effects on screening correlators in a thermal QCD plasma},
author = {Dibyendu Bala and Olaf Kaczmarek and Peter Petreczky and Sayantan Sharma and Swagatam Tah},
journal= {arXiv preprint arXiv:2501.17943},
year = {2025}
}
Comments
26 pages, 8 figures