The baryo-quarkonium picture for hidden-charm and bottom pentaquarks and LHCb and states
arXiv:1807.01207 · doi:10.1016/j.physletb.2018.09.047
Abstract
We study baryo-charmonium [- and -, -, - and -] and baryo-bottomonium [-, - and -] bound states, where is the nucleon and a nucleon resonance. In the baryo-quarkonium model, the five quarks are arranged in terms of a heavy quarkonium core, , embedded in light baryonic matter, , with or . The interaction between the core and the light baryon can be written in terms of the QCD multipole expansion. The spectrum of baryo-charmonium states is calculated and the results compared with the existing experimental data. In particular, we can interpret the recently discovered and pentaquarks as - and - bound states, respectively. We observe that in the baryo-bottomonium sector the binding energies are, on average, slightly larger than those of baryo-charmonia. Because of this, the hidden-bottom pentaquarks are more likely to form than their hidden-charm counterparts. We thus suggest the experimentalists to look for five-quark states in the hidden-bottom sector in the GeV energy region.