QCD at high density/temperature
arXiv:hep-ph/0209287 · doi:10.1016/S0920-5632(03)01411-7
Abstract
I give a survey of recent progress in our understanding of QCD at high density and temperature. I pay particular attention to color superconductivity, applications of lattice gauge theory at nonzero density as well as high temperature, perturbative results at high temperature, and non-equilibrium calculations.
ICHEP 2002 plenary review talk, LaTeX, 18 pages
References in corpus (3)
Cited by in corpus (14)
- Equation of state for hot QCD and compact stars from a mean field approach
- Overlap Dirac operator at nonzero chemical potential and random matrix theory
- The thermal heat kernel expansion and the one-loop effective action of QCD at finite temperature
- Probing neutron-star matter in the lab: similarities and differences between binary mergers and heavy-ion collisions
- Meson-Baryon Couplings from QCD Sum Rules
- Ultrarelativistic nucleus-nucleus collisions and the quark-gluon plasma
- Interacting hadron resonance gas model in magnetic field and the fluctuations of conserved charges
- On the sign problem in dense QCD
- Single-flavour and two-flavour pairing in three-flavour quark matter
- Thermoelectric response of a weakly magnetized thermal QCD medium
- A dimensionally reduced expression for the QCD fermion determinant at finite temperature and chemical potential
- Color superconductor with a color-sextet condensate
- Critical exponents and transport properties near the QCD critical endpoint from the statistical bootstrap model
- Thermoelectric response of a hot and weakly magnetized anisotropic QCD medium