Gauge-invariant screening masses and static quark free energies in QCD at non-zero baryon density
arXiv:1712.09996 · doi:10.1103/PhysRevD.97.054515
Abstract
We discuss the extension of gauge-invariant electric and magnetic screening masses in the Quark-Gluon Plasma to the case of a finite baryon density, defining them in terms of a matrix of Polyakov loop correlators. We present lattice results for QCD with physical quark masses, obtained using the imaginary chemical potential approach, which indicate that the screening masses increase as a function of . A separate analysis is carried out for the theoretically interesting case , where charge conjugation is not explicitly broken and the usual definition of the screening masses can be used for temperatures below the Roberge-Weiss transition. Finally, we investigate the dependence of the static quark free energy on the baryon chemical potential, showing that it is a decreasing function of which displays a peculiar behavior as the pseudocritical transition temperature at is approached.
11 pages, 3 tables, 10 figures