Open charm and dileptons from relativistic heavy-ion collisions
Elena Bratkovskaya, Taesoo Song, Pierre Moreau, Carsten Greiner

TL;DR
This paper investigates open charm production and dilepton radiation in relativistic heavy-ion collisions, comparing different theoretical models and identifying conditions where QGP radiation dominates, aiding future experimental detection.
Contribution
It introduces a comprehensive comparison of PHSD and BAMPS models for charm and dilepton observables, highlighting the dominance of QGP radiation at certain energies.
Findings
QGP radiation dominates dilepton yields at higher energies (above 40 GeV)
PHSD and BAMPS models show consistent charm flow and suppression patterns
Dilepton signals from QGP are promising for future experiments at RHIC BES and FAIR/NICA.
Abstract
We study the dynamics of open charm production and the dilepton radiation of the semi-leptonic decays of correlated pairs versus the quark-gluon plasma (QGP) radiation and hadronic sources in relativistic heavy-ion collisions. Our study is based on the Parton-Hadron-String Dynamics (PHSD) transport approach employing a non-perturbative QCD description of the strongly interacting quark-gluon plasma (sQGP) in terms of dynamical quasiparticles and the EoS based on lattice QCD. We compare the PHSD results for charm observables with the calculations from BAMPS (Boltzmann Approach to Multi-Parton Scatterings) which is based on perturbative QCD with massless partons and interaction cross sections calculated in leading order of the QCD coupling. We compare the dependence of the ratio of -mesons in over collisions scaled by the number of binary collisions…
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