PHENIX Results on Heavy Quarks at Low
arXiv:1404.1858 · doi:10.1016/j.nuclphysa.2014.07.045
Abstract
It is becoming increasingly clear that initial state effects inherent to collisions of nuclei play an important role in the interpretation of data from heavy ion collisions at RHIC and the LHC. Such effects are more apparent in kinematic regions where the gluon density is expected to be significantly modified in the nucleus. The PHENIX experiment has studied these effects through the production of heavy quarks at backwards, middle, and forward rapidity, where partonic interactions in the nucleus and changes in the gluon structure function influence heavy quark production in different ways. Comparisons between these different rapidities in Au collisions offer us a window into the dynamics of particle production and transport in the nucleus. In these proceedings, new PHENIX results on heavy quark production at low values are discussed, in the context of A+A data from RHIC and the LHC.
Proceedings for Hard Probes 2013
References in corpus (8)
- Heavy quarkonium: progress, puzzles, and opportunities
- Quadrupole Anisotropy in Dihadron Azimuthal Correlations in Central Au Collisions at =200 GeV
- Non-Abelian energy loss in cold nuclear matter
- Spectra and ratios of identified particles in Au+Au and d+Au collisions at sqrt(s_NN)=200 GeV
- High transverse momentum quarkonium production and dissociation in heavy ion collisions
- Cold-nuclear-matter effects on heavy-quark production at forward and backward rapidity in d+Au collisions at sqrt(s_NN)=200 GeV
- The PHENIX Forward Silicon Vertex Detector
- System-size dependence of open-heavy-flavor production in nucleus-nucleus collisions at =200 GeV