16. 12. 05 Colour Deconfinement and Quarkonium Binding
Helmut Satz, Fakultät für physik, Universität Bielefeld
Abstract
Helmut Satz, Fakultät für physik, Universität Bielefeld
Abstract
At high temperatures, strongly interacting matter becomes a plasma of deconfined quarks and gluons. In statistical QCD, deconfinement and the properties of the resulting quark-gluon plasma can be investigated by studying the in-medium behaviour of heavy quark bound states. In high energy nuclear interactions, quarkonia probe different aspects of the medium formed in the collision. We survey the results of recent charmonium production studies in SPS and RHIC experiments.
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At high temperatures, strongly interacting matter becomes a plasma of deconfined quarks and gluons. In statistical QCD, deconfinement and the properties of the resulting quark-gluon plasma can be investigated by studying the in-medium behaviour of heavy quark bound states. In high energy nuclear interactions, quarkonia probe different aspects of the medium formed in the collision. We survey the results of recent charmonium production studies in SPS and RHIC experiments.
Key concepts: Quarkonium, Deconfinement, Quark–gluon plasma, Physics, Particle physics, Quantum chromodynamics, Plasma, Nuclear physics