Dual condensate, dressed Polyakov loops and center symmetry from Dirac spectra
arXiv:0810.0899
Abstract
We construct a novel observable for finite temperature QCD that relates confinement and chiral symmetry. It uses phases as boundary conditions for the fermions. We discuss numerical and analytical aspects of this observable, like its spectral behavior below and above the critical temperature, as well as the connection to chiral condensate, center symmetry and the canonical ensemble.
talk given by F. Bruckmann at the XXVI International Symposium on Lattice Field Theory, Williamsburg, Virginia, USA, July 14 - 19, 2008
References in corpus (8)
- Lattice QCD at finite density via a new canonical approach
- Dual quark condensate and dressed Polyakov loops
- Linking confinement to spectral properties of the Dirac operator
- Spectral sums of the Dirac-Wilson Operator and their relation to the Polyakov loop
- Complete spectra of the Dirac operator and their relation to confinement
- Relation between chiral symmetry breaking and confinement in YM-theories
- The topological structure of SU(2) gluodynamics at T > 0 : an analysis using the Symanzik action and Neuberger overlap fermions
- Separating the scales of confinement and chiral-symmetry breaking in lattice QCD with fundamental quarks
Cited by in corpus (5)
- QCD at finite temperature and chemical potential from Dyson-Schwinger equations
- Fermionic boundary conditions and the finite temperature transition of QCD
- Chiral Symmetry Breaking on the Lattice
- Chiral symmetry and spectral properties of the Dirac operator in G2 Yang-Mills Theory
- Gapless Dirac Spectrum at High Temperature