paper

Heavy Flavor Production at STAR

arXiv:nucl-ex/0607031 · doi:10.1088/0954-3899/32/12/S03

Abstract

e present measurements on meson production via direct reconstruction of its hadronic decay channel in minimum bias +Au and Au+Au collisions at =200 GeV with up to 3 GeV/. Non-photonic electron spectra from the charm semi-leptonic decays are analyzed from the same data set as well as in + collision at =200 GeV using the STAR Time-of-Flight (TOF) and Barrel EMC (BEMC) detectors, respectively. Results of the charm-decayed single muon (prompt muon) spectra are also presented at low in Au+Au collisions measured by the TOF detector. The charm production total cross-section per nucleon-nucleon collision is measured to be 1.260.09(stat.)0.23(sys.) mb in minimum bias Au+Au collisions, which is consistent with the scaling compared to 1.40.4 mb in minimum bias +Au collisions, and supports the idea that charm quarks should be produced mostly via parton fusion at early stage in relativistic heavy-ion collisions. A Blast-Wave model fit to the low ( GeV/c) non-photonic electrons, prompt muons and spectra shows that charm hadrons may kinetically freeze-out earlier than light hadrons with a smaller collective velocity. The nuclear modification factors () of the non-photonic electrons in central Au+Au collisions are significantly below unity at 2 GeV/, which indicates a significant amount of energy loss for heavy quarks in Au+Au collisions. The charm transverse momentum distribution must have been modified by the hot and dense matter created in central Au+Au collisions at RHIC.

7 pages, 4 figures, proceedings for the Strange Quark Matter 2006 conference

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Heavy Flavor Production at STAR · wovepaper