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arXiv:nucl-th/0201038·v2·Nuclear Theory

J/psi production in relativistic heavy ion collisions from a multi-phase transport model

Bin Zhang (1) · C.M. Ko (2) · Bao-An Li (1) · Zi-Wei Lin (2) · Subrata Pal (2) ((1) Arkansas State Univ. · (2) Texas A&M Univ.)

Abstract

Using A Multi-Phase Transport (AMPT) model, we study J/psi production from interactions between charm and anti-charm quarks in initial parton phase and between D and Dbar mesons in final hadron phase of relativistic heavy ion collisions at the Relativistic Heavy Ion Collider (RHIC). Including also the inverse reactions of J/psi absorption by gluons and light mesons, we find that the net number of J/psi from the parton and hadron phases is smaller than that expected from the superposition of initial nucleon-nucleon collisions, contrary to the J/psi enhancement predicted by the kinetic formation model. The production of J/psi is further suppressed if one includes the color screening effect in the parton phase. We have also studied the dependence of J/psi production on the charm quark mass and the effective charm meson mass.

Comments: Figures redone with better statistics

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