Kaon and Lambda Production at Intermediate : Insights into the Hadronization of the Bulk Partonic Matter Created in Au+Au Collisions at RHIC
arXiv:nucl-ex/0309003
Abstract
Measurements of identified particles over a broad range may provide strong evidence for the existence of a thermalized partonic state in heavy-ion collisions (\textit{i.e.} a quark-gluon plasma). Of particular interest are the centrality dependence and the azimuthal anisotropy in the yield of baryons and mesons at intermediate . The first measurements of and the number-of-binary-collisions scaled centrality ratio for and production in Au+Au collisions at RHIC are presented. These measurements from the STAR detector establish the particle-type dependence of and within . At intermediate (1.5--4.5 GeV/c) of and is shown to follow a number-of-constituent-quark scaling with v_2^{kaon}(p_T/2)/2 = v_2^{lambda}(p_T/3)/3. shows that lambda production at intermediate increases more rapidly with system size than kaon production: consistent with multi-parton dynamics in particle production. At GeV/c lambda, kaon, and charged hadron production are suppressed by a similar factor (): establishing the extent of the centrality dependent baryon enhancement. The particle- and -dependence of , and are consistent with expectations based on hadronization of bulk partonic matter by coalescence. As such, the constituent-quark-number scaled may reflect the anisotropy established in a partonic stage providing strong evidence for the existence of a quark-gluon plasma in Au+Au collisions at RHIC.
Ph.D. Thesis, 126 pages, Updated references, corrected typos, removed some preliminary results
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