I review the status of the search for quark-gluon plasma in relativistic heavy-ion collisions. The available data provide strong evidence for the "three pillars of the Little Bang model": strong radial expansion of the collision fireball with Hubble-like scaling, thermal hadron emission and primordial hadrosynthesis. It is argued that the initial state of the reaction zone exhibits features which cannot be understood with conventional hadronic dynamics, but are consistent with the formation of deconfined quark-gluon matter
Collisions of heavy ions (nuclei) at ultra-relativistic energies (sqrt(s_NN) >> 10 GeV per nucleon-n...
Nonequilibrium models (three-fluid hydrodynamics, UrQMD, and quark molecular dynamics) are used to d...
Nonequilibrium models (three-fluid hydrodynamics, UrQMD, and quark molecular dynamics) are used to d...
A concise review of the experimental and phenomenological progress in high-energy heavy-ion physics ...
Ultra-relativistic heavy ion collisions offer the unique opportunity to probe highly excited dense n...
Lattice quantum chromodynamics (QCD), defined on a discrete space time lattice, leads to a spectacul...
The status of the physics of heavy ion collisions is reviewed based on measurements over the past 6 ...
Compelling evidence for the creation of a new form of matter has been claimed to be found in Pb+Pb c...
At the Relativistic Heavy Ion Collider (RHIC) collisions of heavy ions at nucleon-nucleon energies o...
Statistical calculations within the Standard Model indicate that at extremely high densities the qua...
After 15 years of heavy-ion collision experiments at the AGS and SPS, the recent turn-on of RHIC has...
Lattice quantum chromodynamics (QCD), defined on a discrete space-time lattice, leads to a spectacul...
I review the current status of lattice Monte-Carlo computations of the equation of state of QCD, our...
Abstract. I review recent progress in developing a complete dynamical model for the evolution of the...
A color-deconfined state of strongly interacting matter is expected to be formed in high-energy coll...
Collisions of heavy ions (nuclei) at ultra-relativistic energies (sqrt(s_NN) >> 10 GeV per nucleon-n...
Nonequilibrium models (three-fluid hydrodynamics, UrQMD, and quark molecular dynamics) are used to d...
Nonequilibrium models (three-fluid hydrodynamics, UrQMD, and quark molecular dynamics) are used to d...
A concise review of the experimental and phenomenological progress in high-energy heavy-ion physics ...
Ultra-relativistic heavy ion collisions offer the unique opportunity to probe highly excited dense n...
Lattice quantum chromodynamics (QCD), defined on a discrete space time lattice, leads to a spectacul...
The status of the physics of heavy ion collisions is reviewed based on measurements over the past 6 ...
Compelling evidence for the creation of a new form of matter has been claimed to be found in Pb+Pb c...
At the Relativistic Heavy Ion Collider (RHIC) collisions of heavy ions at nucleon-nucleon energies o...
Statistical calculations within the Standard Model indicate that at extremely high densities the qua...
After 15 years of heavy-ion collision experiments at the AGS and SPS, the recent turn-on of RHIC has...
Lattice quantum chromodynamics (QCD), defined on a discrete space-time lattice, leads to a spectacul...
I review the current status of lattice Monte-Carlo computations of the equation of state of QCD, our...
Abstract. I review recent progress in developing a complete dynamical model for the evolution of the...
A color-deconfined state of strongly interacting matter is expected to be formed in high-energy coll...
Collisions of heavy ions (nuclei) at ultra-relativistic energies (sqrt(s_NN) >> 10 GeV per nucleon-n...
Nonequilibrium models (three-fluid hydrodynamics, UrQMD, and quark molecular dynamics) are used to d...
Nonequilibrium models (three-fluid hydrodynamics, UrQMD, and quark molecular dynamics) are used to d...