arXiv · hep-ph/0205305
Charmonium Suppression and Regeneration from SPS to RHIC
Abstract
The production of charmonia is investigated for heavy-ion collisions from SPS to RHIC energies. Our approach incorporates two sources of $J/Ψ$ yield: (i) a direct contribution arising from early (hard) parton-parton collisions, subject to subsequent nuclear absorption, quark-gluon plasma and hadronic dissociation, and (ii) statistical production at the hadronization transition by coalescence of $c$ and $\bar{c}$ quarks. Within an expanding thermal fireball framework, the model reproduces $J/Ψ$ centrality dependencies observed at the SPS in Pb-Pb and S-U collisions reasonably well. The study of the $Ψ'/Ψ$ ratio at SPS points at the importance of the hadronic phase for $Ψ'$ interactions, possibly related to effects of chiral symmetry restoration. Predictions are given for the centrality dependence of the $N_{J/Ψ}/N_{c\bar{c}}$ ratio at full RHIC energy. We also calculate the excitation function of this ratio. The latter exhibits a characteristic minimum structure signalling the transition from the standard $J/Ψ$ suppression scenario prevailing at SPS to dominantly thermal regeneration at collider energies.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
L. Grandchamp, R. Rapp. 2002-05-27. Charmonium Suppression and Regeneration from SPS to RHIC. https://doi.org/10.1016/s0375-9474(02)01027-8
Cite the original work for its findings. Save a collection to share your selection of sources.