AbstractThe RHIC experiments have measured the nuclear modification factor RAA of non-photonic electrons in Au+Au collisions at sNN=200 GeV. This RAA exhibits a large suppression for pt>2 GeV/c which is commonly attributed to heavy-quark energy loss. It is expected that the heavy-quark radiative energy loss is smaller than the light quark one because of the so-called dead-cone effect. An enhancement of the charm baryon yield with respect to the charm meson yield, as it is observed for light and strange hadrons, can explain part of the suppression. This phenomenon has been put forward in a previous work. We present in this Letter a more complete study based on a detailed simulation which includes electrons from charm and bottom decay, charm ...
The STAR collaboration at RHIC reports measurements of the inclusive yield of non-photonic electron...
We identify the nuclear effects that modify the cross sections for open heavy flavor production in p...
The STAR collaboration at the BNL Relativistic Heavy-Ion Collider (RHIC) reports measurements of the...
International audienceThe RHIC experiments have measured the nuclear modification factor R_AA of non...
The RHIC experiments have measured the nuclear modification factor R_AA of non-photonic electrons in...
AbstractThe RHIC experiments have measured the nuclear modification factor RAA of non-photonic elect...
14 pages, 3 figuresWe investigate the effect of the so-called anomalous baryon/meson enhancement to ...
This thesis presents measurements of electrons at midrapidity from the decays of heavy quarks produc...
Measurements by the STAR and PHENIX collaborations indicate that a quark-gluon plasma, a hot and den...
Heavy quarks are suitable probes to study the properties of Quark-Gluon Plasma (QGP), a strongly int...
We investigate the effect of the so-called anomalous baryon/meson enhancement to the nuclear modific...
The STAR collaboration at RHIC reports measurements of the inclusive yield of non-photonic electrons...
The STAR collaboration at RHIC reports measurements of the inclusive yield of non-photonic electron...
We identify the nuclear effects that modify the cross sections for open heavy flavor production in p...
The STAR collaboration at the BNL Relativistic Heavy-Ion Collider (RHIC) reports measurements of the...
International audienceThe RHIC experiments have measured the nuclear modification factor R_AA of non...
The RHIC experiments have measured the nuclear modification factor R_AA of non-photonic electrons in...
AbstractThe RHIC experiments have measured the nuclear modification factor RAA of non-photonic elect...
14 pages, 3 figuresWe investigate the effect of the so-called anomalous baryon/meson enhancement to ...
This thesis presents measurements of electrons at midrapidity from the decays of heavy quarks produc...
Measurements by the STAR and PHENIX collaborations indicate that a quark-gluon plasma, a hot and den...
Heavy quarks are suitable probes to study the properties of Quark-Gluon Plasma (QGP), a strongly int...
We investigate the effect of the so-called anomalous baryon/meson enhancement to the nuclear modific...
The STAR collaboration at RHIC reports measurements of the inclusive yield of non-photonic electrons...
The STAR collaboration at RHIC reports measurements of the inclusive yield of non-photonic electron...
We identify the nuclear effects that modify the cross sections for open heavy flavor production in p...
The STAR collaboration at the BNL Relativistic Heavy-Ion Collider (RHIC) reports measurements of the...