Numerical study of hot strongly interacting matter
arXiv:1204.4414 · doi:10.1088/1742-6596/402/1/012036
Abstract
I review recent progress in study of strongly interacting matter at high temperatures using Monte-Carlo simulations in lattice QCD.
Talk presented at Conference on Computational Physics, Oct. 30 - Nov. 3, 2011, Gatlinburg TN, LaTeX uses jpconf11.clo, jpconf.cls
References in corpus (22)
- The order of the quantum chromodynamics transition predicted by the standard model of particle physics
- The QCD equation of state with dynamical quarks
- The QCD transition temperature: results with physical masses in the continuum limit
- The QCD transition temperature: results with physical masses in the continuum limit II.
- The QCD Equation of State with almost Physical Quark Masses
- Equation of state and QCD transition at finite temperature
- The transition temperature in QCD
- The phase boundary for the chiral transition in (2+1)-flavor QCD at small values of the chemical potential
- Color Screening Melts Quarkonium
- Results from the Relativistic Heavy Ion Collider
- Quarkonium correlators and spectral functions at zero and finite temperature
- Charmonium at high temperature in two-flavor QCD
- Can quarkonia survive deconfinement ?
- Meson screening masses from lattice QCD with two light and the strange quark
- Constant contribution in meson correlators at finite temperature
- QCD equation of state with 2+1 flavors of improved staggered quarks
- Polyakov loop and correlator of Polyakov loops at next-to-next-to-leading order
- On temperature dependence of quarkonium correlators
- The Spatial String Tension and Dimensional Reduction in QCD
- Static quark anti-quark pair in SU(2) gauge theory
- Correlations and fluctuations from lattice QCD
- Describing Charmonium Correlation Functions in Euclidean Time