paper

Production of and in central Pb+Pb collisions at =2.76 TeV within a covariant coalescence model

arXiv:1607.04037 · doi:10.1103/PhysRevC.94.064908

Abstract

We study the production of and exotic states in central Pb+Pb collisions at TeV at LHC via both hadron and quark coalescence within a covariant coalescence model with a blast-wave-like parametrization for the phase-space configurations of constituent particles at freezeout. In the hadron coalescence, the two states are considered as molecular states while they are considered as six-quark states in the quark coalescence.For , we find that the yields of both molecular and six-quark states are much larger than the experimental upper-limits. For , while the molecule-state yield is much larger than the experimental upper-limits, the six-quark-state yield could be lower than the upper-limits. The higher molecule-state yields are mainly due to the large contribution of short-lived strong resonance decays into (anti-)nucleons and (anti-) which can significantly enhance the molecule-state yields of and via hadron coalescence. Our results suggest that the current experimental measurement at LHC cannot exclude the existence of the as an exotic six-quark state, and if is a six-quark state, it is then on the brink of being discovered.

6 pages, 4 figures, 2 tables. Minor modifications. Accepted version to appear in PRC