Strongly interacting matter at high densities and temperatures can be created in high-energy collisions of heavy atomic nuclei. Since 2010, the Large Hadron Collider at CERN provides proton-proton, proton-lead and lead-lead collisions at an unprecedented energy to study the so-called quark-gluon plasma (QGP) state. Several experimental probes have been proposed to determine the properties of the QGP. In this contribution, a selection of recent results from the heavy-ion programme at RHIC and the LHC are reviewed and discussed
Collisions of heavy atomic nuclei at very high beam energies allow to create and study hot QCD matt...
The main results on electroweak probes, jets, high-pT hadrons, heavy-flavour and quarkonia productio...
Over the last decade it has been established that a quark-gluon plasma (QGP) is formed in ultrarelat...
Strongly interacting matter at very high temperature and density is expected to exist in a state cal...
Proceedings of the 2011 Joliot Curie School (http://ejc2011.sciencesconf.org/) September 12-17th 201...
Proceedings of the 2011 Joliot Curie School (http://ejc2011.sciencesconf.org/) September 12-17th 201...
Proceedings of the 2011 Joliot Curie School (http://ejc2011.sciencesconf.org/) September 12-17th 201...
Proceedings of the 2011 Joliot Curie School (http://ejc2011.sciencesconf.org/) September 12-17th 201...
A color-deconfined state of strongly interacting matter is expected to be formed in high-energy coll...
The study of heavy-ion collisions has currently unprecedented opportunities with two first class fac...
The recent results on relativistic heavy-ion collisions are discussed. The most convincing quark-glu...
The recent results on relativistic heavy-ion collisions are discussed. The most convincing quark-glu...
The main goals of relativistic heavy-ion experiments is to study the properties of QCD matter under ...
The study of heavy-ion collisions has currently unprecedented opportunities with two first class fac...
Collisions of heavy atomic nuclei at very high beam energies allow to create and study hot QCD matt...
Collisions of heavy atomic nuclei at very high beam energies allow to create and study hot QCD matt...
The main results on electroweak probes, jets, high-pT hadrons, heavy-flavour and quarkonia productio...
Over the last decade it has been established that a quark-gluon plasma (QGP) is formed in ultrarelat...
Strongly interacting matter at very high temperature and density is expected to exist in a state cal...
Proceedings of the 2011 Joliot Curie School (http://ejc2011.sciencesconf.org/) September 12-17th 201...
Proceedings of the 2011 Joliot Curie School (http://ejc2011.sciencesconf.org/) September 12-17th 201...
Proceedings of the 2011 Joliot Curie School (http://ejc2011.sciencesconf.org/) September 12-17th 201...
Proceedings of the 2011 Joliot Curie School (http://ejc2011.sciencesconf.org/) September 12-17th 201...
A color-deconfined state of strongly interacting matter is expected to be formed in high-energy coll...
The study of heavy-ion collisions has currently unprecedented opportunities with two first class fac...
The recent results on relativistic heavy-ion collisions are discussed. The most convincing quark-glu...
The recent results on relativistic heavy-ion collisions are discussed. The most convincing quark-glu...
The main goals of relativistic heavy-ion experiments is to study the properties of QCD matter under ...
The study of heavy-ion collisions has currently unprecedented opportunities with two first class fac...
Collisions of heavy atomic nuclei at very high beam energies allow to create and study hot QCD matt...
Collisions of heavy atomic nuclei at very high beam energies allow to create and study hot QCD matt...
The main results on electroweak probes, jets, high-pT hadrons, heavy-flavour and quarkonia productio...
Over the last decade it has been established that a quark-gluon plasma (QGP) is formed in ultrarelat...