Dual condensate and QCD phase transition
arXiv:1012.2314 · doi:10.1063/1.3574966
Abstract
The dual condensate is a new QCD phase transition order parameter, which connnects confinement and chiral symmetry breaking as different mass limits. We discuss the relation between the fermion spectrum at general boundary conditions and the dual condensate and show numerical results for the latter from unquenched SU(3) lattice configurations.
Talk given by Bo Zhang on 'Quark Confinement and the Hadron Spectrum IX', Madrid, Aug.2010
Cited by in corpus (9)
- Fermion Interactions and Universal Behavior in Strongly Interacting Theories
- The gluon propagator close to criticality
- Chiral Symmetry Breaking on the Lattice
- Dynamical Locking of the Chiral and the Deconfinement Phase Transition in QCD
- Dressed Polyakov loop and flavor dependent phase transitions
- Dressed Wilson loops as dual condensates in response to magnetic and electric fields
- Dual condensates at finite isospin chemical potential
- Chiral and deconfinement phase transition in the Hamiltonian approach to QCD in Coulomb gauge
- Dual meson condensates in the Polyakov-loop extended linear sigma model