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arXiv:1204.2815·v2·Nuclear Experiment

Decomposition of flow and nonflow in relativistic heavy-ion collisions

Lingshan Xu🇺🇸 · Li Yi🇺🇸 · Daniel Kikola🇺🇸 · Joshua Konzer🇺🇸 · Fuqiang Wang🇺🇸 · Wei Xie🇺🇸

Abstract

We propose a method to separate \Delta\eta-dependent and \Delta\eta-independent azimuthal correlations using two- and four-particle cumulants between pseudo-rapidity (\eta) bins in symmetric heavy-ion collisions. The \Delta\eta-independent correlation may be dominated by harmonic flows, a global correlation to the common collision geometry. The \Delta\eta-dependent correlation can be identified as nonflow, particle correlations unrelated to the common geometry. Our method exploits the \eta symmetry of the average harmonic flows and is "data-driven." We use the AMPT and HIJING event generators to illustrate our method. We discuss the decomposed \Delta\eta-independent and \Delta\eta-dependent correlations regarding flow and nonflow in the models.

Comments: 16 pages, 15 figures, 1 table

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