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We report on the first measurement of charm-strange meson $D_s^{pm}$ production at midrapidity in Au+Au collisions at $sqrt{s_{_{rm NN}}}$ = 200 GeV from the STAR experiment. The yield ratio between strange ($D_{s}^{pm}$) and non-strange ($D^{0}$) open-charm mesons is presented and compared to model calculations. A significant enhancement, relative to a PYTHIA simulation of $p$+$p$ collisions, is observed in the $D_{s}^{pm}/D^0$ yield ratio in Au+Au collisions over a large range of collision centralities. Model calculations incorporating abundant strange-quark production in the quark-gluon plasma (QGP) and coalescence hadronization qualitatively reproduce the data. The transverse-momentum integrated yield ratio of $D_{s}^{pm}/D^0$ at midrapidity is consistent with a prediction from a statistical hadronization model with the parameters constrained by the yields of light and strange hadrons measured at the same collision energy. These results suggest that the coalescence of charm quarks with strange quarks in the QGP plays an important role in $D_{s}^{pm}$ meson production in heavy-ion collisions.
We report the STAR measurements of dielectron ($e^+e^-$) production at midrapidity ($|y_{ee}|<$1) in Au+Au collisions at $sqrt{s_{rm NN}}$ = 200,GeV. The measurements are evaluated in different invariant mass regions with a focus on 0.30-0.76 ($rho$-
We report the first measurement of rapidity-odd directed flow ($v_{1}$) for $D^{0}$ and $overline{D^{0}}$ mesons at mid-rapidity ($|y| < 0.8$) in Au+Au collisions at $sqrt{s_{rm NN}}$ = 200,GeV using the STAR detector at the Relativistic Heavy Ion Co
We report preliminary results of hypertriton observation in heavy-ion collisions at RHIC. We have identified 157 +- 30 candidates in the current sample containing ~10^8 Au+Au events at sqrt{s_{NN}} = 200 GeV. The production rate of hypertriton is clo
We report the first measurement of charmed-hadron ($D^0$) production via the hadronic decay channel ($D^0rightarrow K^- + pi^+$) in Au+Au collisions at $sqrt{s_{_{mathrm{NN}}}}$ = 200,GeV with the STAR experiment. The charm production cross-section p
In this erratum we report changes on the $D^0$ $p_T$ spectra and nuclear modification factor ($R_{AA}$) in Au+Au collisions at $sqrt{s_{_{mathrm{NN}}}}$ = 200 GeV by fixing the errors in the efficiency and selection criteria that affected the Au+Au r