Understanding the behaviour bulk matter governed by QCD elementary degrees of freedom and interaction, and studying how it turns into hadronic matter, offers challenging perspectives and touches fundamental issues in the study of QCD in its nonperturbative regime. This special issue of the European Journal of Physics: Special Topics entitled Quark–Gluon Plasma and heavy-ion phenomenology published a set of 7 papers aiming to put in perspective the important problems that are being addressed by the researchers in this area. The main motivation of this special issue is to learn the properties of the densest and hottest forms of QCD matter that one can produce in the laboratory
A concise review of the experimental and phenomenological progress in high-energy heavy-ion physics ...
Proceedings of the 2011 Joliot Curie School (http://ejc2011.sciencesconf.org/) September 12-17th 201...
The two arguably most generic phenomena seen in ultra-relativistic heavy ion collisions are the flow...
In this review, we present an up-to-date phenomenological summary of research developments in the ph...
Before matter as we know it emerged, the universe was filled with the primordial state of hadronic m...
This document presents the response of the US relativistic heavy-ion community to the request for co...
In this review, we present an up-to-date phenomenological summary of research developments in the ph...
Heavy ion collisions are used to study fundamental features of quantum chromodynamics (QCD) matter v...
Satz H. The Thermodynamics of Quarks and Gluons. In: Sarkar S, Satz H, Sinha B, eds. The Physics of ...
This article summarizes our present knowledge about nuclear matter at the highest energy densities a...
Quantum Chromodynamics, the theory of strong interaction, predicts a new phase of matter for extreme...
Satz H. QUARK MATTER AND NUCLEAR COLLISIONS: A BRIEF HISTORY OF STRONG INTERACTION THERMODYNAMICS. I...
Strongly interacting matter at very high temperature and density is expected to exist in a state cal...
The physics of quark gluon plasma (QGP) and heavy ion collisions at the collider energies is briefly...
Lattice quantum chromodynamics (QCD), defined on a discrete space time lattice, leads to a spectacul...
A concise review of the experimental and phenomenological progress in high-energy heavy-ion physics ...
Proceedings of the 2011 Joliot Curie School (http://ejc2011.sciencesconf.org/) September 12-17th 201...
The two arguably most generic phenomena seen in ultra-relativistic heavy ion collisions are the flow...
In this review, we present an up-to-date phenomenological summary of research developments in the ph...
Before matter as we know it emerged, the universe was filled with the primordial state of hadronic m...
This document presents the response of the US relativistic heavy-ion community to the request for co...
In this review, we present an up-to-date phenomenological summary of research developments in the ph...
Heavy ion collisions are used to study fundamental features of quantum chromodynamics (QCD) matter v...
Satz H. The Thermodynamics of Quarks and Gluons. In: Sarkar S, Satz H, Sinha B, eds. The Physics of ...
This article summarizes our present knowledge about nuclear matter at the highest energy densities a...
Quantum Chromodynamics, the theory of strong interaction, predicts a new phase of matter for extreme...
Satz H. QUARK MATTER AND NUCLEAR COLLISIONS: A BRIEF HISTORY OF STRONG INTERACTION THERMODYNAMICS. I...
Strongly interacting matter at very high temperature and density is expected to exist in a state cal...
The physics of quark gluon plasma (QGP) and heavy ion collisions at the collider energies is briefly...
Lattice quantum chromodynamics (QCD), defined on a discrete space time lattice, leads to a spectacul...
A concise review of the experimental and phenomenological progress in high-energy heavy-ion physics ...
Proceedings of the 2011 Joliot Curie School (http://ejc2011.sciencesconf.org/) September 12-17th 201...
The two arguably most generic phenomena seen in ultra-relativistic heavy ion collisions are the flow...