We present an overview of selected aspects of ultrarelativistic nucleus-nucleus collisions, a research program devoted to the study of strongly interacting matter at high energy densities and in particular to the characterization of the quark-gluon plasma (QGP). The basic features of the phase diagram of nuclear matter, as currently understood theoretically, are discussed. The experimental program, carried out over a broad energy domain at various accelerators, is briefly reviewed, with an emphasis on the global characterization of nucleus-nucleus collisions. Two particular aspects are treated in more detail: i) the application of statistical models to a phenomenological description of particle production and the information it provides on ...
I present the measurements, analysis and results obtained with the NA34 experiment at the CERN Europ...
Andronic A, Blaschke D, Braun-Munzinger P, et al. Hadron production in ultra-relativistic nuclear co...
We review the physics of nuclear matter at high energy density and the experimental search for the Q...
The major aim of nucleus-nucleus collisions at the LHC is to study the physics of strongly interacti...
I present the motivation for studying nuclear collisions at ultrarelativistic energies which is to m...
Ultra—Relativistic Heavy—Ion Collisions (URHIC) have provided us the opportunity to search for the ...
Quantum Chromodynamics (QCD) predicts that under extreme conditions of energy density ( ≥ 2 GeV fm...
We discuss recent experimental results in the field of ultra-relativistic nuclear collisions. The em...
We review the progress in understanding the strange particle yields in nuclear collisions and their ...
Quantum Chromodynamics, the theory of strong interaction, predicts a new phase of matter for extreme...
In nucleus-nucleus collisions at ultra-relativistic energies matter is formed with initial energy de...
Highlights of the results from ultrarelativistic heavy ion collisions at CERN-SPS are reviewed. In p...
It has been theorized that if heavy nuclei (e.g. Au, Pb) are collided at sufficiently high energies,...
Strongly interacting matter at very high temperature and density is expected to exist in a state cal...
The quark-gluon plasma, possibly created in ultrarelativistic heavy-ion collisions, is a strongly in...
I present the measurements, analysis and results obtained with the NA34 experiment at the CERN Europ...
Andronic A, Blaschke D, Braun-Munzinger P, et al. Hadron production in ultra-relativistic nuclear co...
We review the physics of nuclear matter at high energy density and the experimental search for the Q...
The major aim of nucleus-nucleus collisions at the LHC is to study the physics of strongly interacti...
I present the motivation for studying nuclear collisions at ultrarelativistic energies which is to m...
Ultra—Relativistic Heavy—Ion Collisions (URHIC) have provided us the opportunity to search for the ...
Quantum Chromodynamics (QCD) predicts that under extreme conditions of energy density ( ≥ 2 GeV fm...
We discuss recent experimental results in the field of ultra-relativistic nuclear collisions. The em...
We review the progress in understanding the strange particle yields in nuclear collisions and their ...
Quantum Chromodynamics, the theory of strong interaction, predicts a new phase of matter for extreme...
In nucleus-nucleus collisions at ultra-relativistic energies matter is formed with initial energy de...
Highlights of the results from ultrarelativistic heavy ion collisions at CERN-SPS are reviewed. In p...
It has been theorized that if heavy nuclei (e.g. Au, Pb) are collided at sufficiently high energies,...
Strongly interacting matter at very high temperature and density is expected to exist in a state cal...
The quark-gluon plasma, possibly created in ultrarelativistic heavy-ion collisions, is a strongly in...
I present the measurements, analysis and results obtained with the NA34 experiment at the CERN Europ...
Andronic A, Blaschke D, Braun-Munzinger P, et al. Hadron production in ultra-relativistic nuclear co...
We review the physics of nuclear matter at high energy density and the experimental search for the Q...