arXiv Analytics

Sign in

arXiv:hep-th/0701175AbstractReferencesReviewsResources

Matrix Models and QCD with Chemical Potential

G. Akemann

Published 2007-01-18Version 1

The Random Matrix Model approach to Quantum Chromodynamics (QCD) with non-vanishing chemical potential is reviewed. The general concept using global symmetries is introduced, as well as its relation to field theory, the so-called epsilon regime of chiral Perturbation Theory (echPT). Two types of Matrix Model results are distinguished: phenomenological applications leading to phase diagrams, and an exact limit of the QCD Dirac operator spectrum matching with echPT. All known analytic results for the spectrum of complex and symplectic Matrix Models with chemical potential are summarised for the symmetry classes of ordinary and adjoint QCD, respectively. These include correlation functions of Dirac operator eigenvalues in the complex plane for real chemical potential, and in the real plane for imaginary isospin chemical potential. Comparisons of these predictions to recent Lattice simulations are also discussed.

Comments: 40 pages, invited review for Int.J.Mod.Phys.A
Journal: Int.J.Mod.Phys.A22:1077-1122,2007
Categories: hep-th, hep-lat, math-ph, math.MP
Related articles: Most relevant | Search more
arXiv:1207.4605 [hep-th] (Published 2012-07-19, updated 2012-10-09)
Deconfinement transitions of large N QCD with chemical potential at weak and strong coupling
arXiv:1301.5750 [hep-th] (Published 2013-01-24)
Overview of large N QCD with chemical potential at weak and strong coupling
arXiv:1005.2181 [hep-th] (Published 2010-05-12, updated 2010-08-03)
Thermodynamics of Large N Gauge Theories with Chemical Potentials in a 1/D Expansion