RHIC experiments carry out a comprehensive physics program which studies open heavy flavor and quarkonium production in relativistic heavy-ion collisions. The discovery at RHIC of large high-pT suppression and flow of electrons from heavy quarks flavors have altered our view of the hot and dense matter formed in central Au + Au collisions at SNN=200 GeV. These results suggest a large energy loss and flow of heavy quarks in the hot, dense matter. In recent years, the RHIC experiments upgraded the detectors; (1) PHENIX Collaboration installed silicon vertex tracker (VTX) at mid-rapidity region and forward silicon vertex tracker (FVTX) at the forward rapidity region, and (2) STAR Collaboration installed the heavy flavor tracker (HFT) and the m...
Quarks of heavy flavors are useful tool to study quark-gluon plasma created in heavy-ion collisions....
We discuss the recent results on open charm measurements at RHIC. The heavy flavor upgrade program f...
The study of heavy flavor production in relativistic heavy ion collisions is an extreme experimental...
The discovery at RHIC of large high-pT suppression and flow of electrons from heavy quarks flavors h...
The discovery at RHIC of large high-pT suppression and flow of electrons from heavy quarks flavors h...
The discovery at RHIC of large high-pT suppression and flow of electrons from heavy quarks flavors h...
Abstract. The properties of the hot and dense nuclear matter produced at RHIC in heavy-ion collision...
The properties of the hot and dense nuclear matter produced at RHIC in heavy-ion collisions can be i...
The properties of the hot and dense nuclear matter produced at RHIC in heavy-ion collisions can be i...
Hadrons carrying heavy quarks, i.e. charm or bottom, are important probes of the hot and dense mediu...
Hadrons carrying heavy quarks, i.e. charm or bottom, are important probes of the hot and dense mediu...
Hadrons carrying heavy quarks, i.e. charm or bottom, are important probes of the hot and dense mediu...
Hadrons carrying heavy quarks, i.e. charm or bottom, are important probes of the hot and dense mediu...
Quarks of heavy flavors are useful tool to study quark-gluon plasma created in heavy-ion collisions....
The study of heavy flavor production in relativistic heavy ion collisions is an extreme experimental...
Quarks of heavy flavors are useful tool to study quark-gluon plasma created in heavy-ion collisions....
We discuss the recent results on open charm measurements at RHIC. The heavy flavor upgrade program f...
The study of heavy flavor production in relativistic heavy ion collisions is an extreme experimental...
The discovery at RHIC of large high-pT suppression and flow of electrons from heavy quarks flavors h...
The discovery at RHIC of large high-pT suppression and flow of electrons from heavy quarks flavors h...
The discovery at RHIC of large high-pT suppression and flow of electrons from heavy quarks flavors h...
Abstract. The properties of the hot and dense nuclear matter produced at RHIC in heavy-ion collision...
The properties of the hot and dense nuclear matter produced at RHIC in heavy-ion collisions can be i...
The properties of the hot and dense nuclear matter produced at RHIC in heavy-ion collisions can be i...
Hadrons carrying heavy quarks, i.e. charm or bottom, are important probes of the hot and dense mediu...
Hadrons carrying heavy quarks, i.e. charm or bottom, are important probes of the hot and dense mediu...
Hadrons carrying heavy quarks, i.e. charm or bottom, are important probes of the hot and dense mediu...
Hadrons carrying heavy quarks, i.e. charm or bottom, are important probes of the hot and dense mediu...
Quarks of heavy flavors are useful tool to study quark-gluon plasma created in heavy-ion collisions....
The study of heavy flavor production in relativistic heavy ion collisions is an extreme experimental...
Quarks of heavy flavors are useful tool to study quark-gluon plasma created in heavy-ion collisions....
We discuss the recent results on open charm measurements at RHIC. The heavy flavor upgrade program f...
The study of heavy flavor production in relativistic heavy ion collisions is an extreme experimental...