Approaches to QCD phase diagram; effective models, strong-coupling lattice QCD, and compact stars
arXiv:1512.08468 · doi:10.1088/1742-6596/668/1/012004
Abstract
The outline of the two lectures given in "Dense Matter School 2015" is presented. After an overview on the relevance of the phase diagram to heavy-ion collisions and compact star phenomena, I show some basic formulae to discuss the QCD phase diagram in the mean field treatment of the Nambu-Jona-Lasinio model. Next, I introduce the strong-coupling lattice QCD, which is one of the promising methods to access the QCD phase diagram including the first order phase boundary. In the last part, I discuss the QCD phase diagram in asymmetric matter, which should be formed in compact star phenomena.
Lecture given at Helmholtz International Summer School "Dense Matter 2015", 29 June-11 July 2015 and the 15th International Conference on Strageness in Quark Matter (SQM 2015), 6-11 July 2015, Dubna, Russia. 12 pages, 10 figures. Some typos are corrected in v2
References in corpus (5)
- The order of the quantum chromodynamics transition predicted by the standard model of particle physics
- Neutrino signals from the formation of black hole: a probe of equation of state of dense matter
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Cited by in corpus (5)
- Complex Langevin calculations in QCD at finite density
- Estimation of electric field in intermediate-energy heavy-ion collisions
- Heavy-Ion Collisions toward High-Density Nuclear Matter
- Optimal collision-energy range for realizing macroscopic high-baryon-density matter
- On the validity of the complex Langevin method near the deconfining phase transition in QCD at finite density