The goal of ultrarelativistic heavy-ion collisions at RHIC and the LHC is to study the properties of the quark-gluon plasma (QGP), a phase of matter with partonic degrees of freedom. Electromagnetic radiation, in form of photons or lepton pairs, is a penetrating probe that allows the investigation of the full time evolution and dynamics of the produced matter as it does not undergo strong interaction in the final state. The dilepton spectrum is extremely rich in physics sources: Thermal black-body radiation is of particular interest as it carries information about the QGP temperature. Modifications of the spectral functions of light vector mesons are linked to the potential restoration of chiral symmetry in the QGP phase. Correlated lepton ...
Abstract. We investigate the properties of the QCD matter across the deconfinement phase transition ...
Both dilepton and charm production at RHIC are considered to be important signatures for Quark-Gluon...
The present status of our understanding of low mass dilepton production in relativistic heavy ion co...
The study of dilepton production plays a fundamental role in our understanding of ultrarelativistic ...
Recently, there is growing evidence that a new state of matter is formed in Au+Au collisions at RHIC...
In this work thermal dilepton production from a hot medium created in heavy ion collision is studied...
International audienceThe lepton pair production rate at finite temperature and at next-to-leading-o...
We discuss the latest theoretical results on direct photon and dilepton production from relativistic...
We analyze the opportunity to observe thermal dileptons emitted off deconfined matter resulting in h...
Dileptons are unique probes to study the space--time evolution of ultrarelativistic heavy-ion collis...
We investigate the properties of the QCD matter across the deconfinement phase transition in the sco...
We study the prospects to get information about the early and hot stages of deconfined matter produc...
We study the invariant-mass distributions of dileptons produced in ultrarelativistic heavy-ion colli...
We study dilepton production from a thermally equilibrating quark-gluon plasma expected to be formed...
Dilpeton production is considered within a complete dynamical framework for thermalized matter assum...
Abstract. We investigate the properties of the QCD matter across the deconfinement phase transition ...
Both dilepton and charm production at RHIC are considered to be important signatures for Quark-Gluon...
The present status of our understanding of low mass dilepton production in relativistic heavy ion co...
The study of dilepton production plays a fundamental role in our understanding of ultrarelativistic ...
Recently, there is growing evidence that a new state of matter is formed in Au+Au collisions at RHIC...
In this work thermal dilepton production from a hot medium created in heavy ion collision is studied...
International audienceThe lepton pair production rate at finite temperature and at next-to-leading-o...
We discuss the latest theoretical results on direct photon and dilepton production from relativistic...
We analyze the opportunity to observe thermal dileptons emitted off deconfined matter resulting in h...
Dileptons are unique probes to study the space--time evolution of ultrarelativistic heavy-ion collis...
We investigate the properties of the QCD matter across the deconfinement phase transition in the sco...
We study the prospects to get information about the early and hot stages of deconfined matter produc...
We study the invariant-mass distributions of dileptons produced in ultrarelativistic heavy-ion colli...
We study dilepton production from a thermally equilibrating quark-gluon plasma expected to be formed...
Dilpeton production is considered within a complete dynamical framework for thermalized matter assum...
Abstract. We investigate the properties of the QCD matter across the deconfinement phase transition ...
Both dilepton and charm production at RHIC are considered to be important signatures for Quark-Gluon...
The present status of our understanding of low mass dilepton production in relativistic heavy ion co...