arXiv:0808.2702·v2·Nuclear Theory
suppression and spectra in RHIC and LHC energy collisions
Abstract
In a hydrodynamic model, we have studied production in Au+Au/Cu+Cu collisions at RHIC energy =200 GeV. At the initial time, 's are randomly distributed in the fluid. As the fluid evolve in time, the free streaming 's are dissolved if the local fluid temperature exceeds a threshold temperature . Sequential melting of charmonium states (, and ), with melting temperatures , and feed-down fraction , explains the PHENIX data on the centrality dependence of suppression in Au+Au collisions. spectra and the nuclear modification factor in Au+Au collisions are also well explained in the model. The model however over predict centrality dependence of suppression in Cu+Cu collisions by 20-30%. The spectra are under predicted by 20-30%. The model predict that in central Pb+Pb collisions at LHC energy, =5500 GeV, 's are suppressed by a factor of 10. The model predicted distribution in Pb+Pb collisions at LHC is similar to that in Au+Au collisions at RHIC.
Comments: 8 pages, 7 figures