Thermal Phase Transition in the NJL Model of QCD
arXiv:hep-lat/0410003 · doi:10.1016/j.nuclphysa.2004.12.030
Abstract
We present results from numerical studies of the NJL model with two massless quarks at nonzero temperature. We show that the model undergoes a second order chiral phase transition which belongs to the 3d O(4) spin model universality class.
4 pages, Presented at "Phase Transitions in Strongly Interacting Matter", Prague, 23 - 29 August 2004
References in corpus (7)
- Phase structure and critical temperature of two-flavor QCD with a renormalization group improved gauge action and clover improved Wilson quark action
- Meron-Cluster Simulation of a Chiral Phase Transition with Staggered Fermions
- Numerical Portrait of a Relativistic BCS Gapped Superfluid
- Perturbative renormalization factors of four-quark operators for domain-wall QCD
- Meron-cluster algorithms and chiral symmetry breaking in a (2+1)-d staggered fermion model
- Critical Behavior of a Chiral Condensate with a Meron Cluster Algorithm
- Simulating lattice QCD at finite temperature and zero quark mass