The use of probes containing heavy quarks is one of the pillars for the study of medium formed in high energy nuclear collisions. The conceptual ideas formulated more than two decades ago, such as quark mass hierarchy of the energy that the probe lose in the media and color screening of bound heavy quarkonia states, have being challenged by the measurements performed at RHIC and LHC. A summary of the most recent experimental observations involving charm and bottom quarks in pp, pA, and AA collisions from collisions energies extending from √sNN =200 GeV to 8 TeV is presented. This manuscript also discuss possibilities of new measurements which can be at reach with increased statistics and detector upgrades
Large heavy flavor enriched data sets are being accumulated by the CMS experiment in different colli...
A brief survey of the role of heavy flavors as a probe of the state of matter produced by high energ...
We review theoretical and experimental results relevant to charm and bottom physics. In particular, ...
The use of probes containing heavy quarks is one of the pillars for the study of medium formed in hi...
Hadrons containing heavy-flavors are unique probes of the properties of the hot and dense QCD medium...
Hadrons containing heavy-flavors are unique probes of the properties of the hot and dense QCD medium...
Their fast formation and microscopic scale of heavy flavor (HF) probes are ideal for a Quark-Gluon P...
We review some recent results on heavy quark production in high energy hadronic collisions. We will ...
International audienceAn overview of recent experimental results on quarkonium production in heavy-i...
High luminosity data in a fixed-target experiment allow studying interactions of heavy quarks with n...
Heavy flavours are effective probes of the hot and dense matter, the Quark-Gluon plasma (QGP), produ...
Heavy flavor is a useful probe to study the property of the strongly coupled quark gluon plasma crea...
Studies of Heavy flavor production are of great interest in heavy ion collisions. In the produced me...
Charm and bottom quarks provide a powerful tool to study the properties of the hot, dense medium cre...
Quarkonia and open heavy flavour production are crucial to study the properties of the nuclear matte...
Large heavy flavor enriched data sets are being accumulated by the CMS experiment in different colli...
A brief survey of the role of heavy flavors as a probe of the state of matter produced by high energ...
We review theoretical and experimental results relevant to charm and bottom physics. In particular, ...
The use of probes containing heavy quarks is one of the pillars for the study of medium formed in hi...
Hadrons containing heavy-flavors are unique probes of the properties of the hot and dense QCD medium...
Hadrons containing heavy-flavors are unique probes of the properties of the hot and dense QCD medium...
Their fast formation and microscopic scale of heavy flavor (HF) probes are ideal for a Quark-Gluon P...
We review some recent results on heavy quark production in high energy hadronic collisions. We will ...
International audienceAn overview of recent experimental results on quarkonium production in heavy-i...
High luminosity data in a fixed-target experiment allow studying interactions of heavy quarks with n...
Heavy flavours are effective probes of the hot and dense matter, the Quark-Gluon plasma (QGP), produ...
Heavy flavor is a useful probe to study the property of the strongly coupled quark gluon plasma crea...
Studies of Heavy flavor production are of great interest in heavy ion collisions. In the produced me...
Charm and bottom quarks provide a powerful tool to study the properties of the hot, dense medium cre...
Quarkonia and open heavy flavour production are crucial to study the properties of the nuclear matte...
Large heavy flavor enriched data sets are being accumulated by the CMS experiment in different colli...
A brief survey of the role of heavy flavors as a probe of the state of matter produced by high energ...
We review theoretical and experimental results relevant to charm and bottom physics. In particular, ...