English

Interpretation of LHCb Hidden-Charm Pentaquarks within the Compact Diquark Model

High Energy Physics - Phenomenology 2020-12-15 v1 High Energy Physics - Experiment

Abstract

The LHCb collaboration have recently updated their analysis of the resonant J/ψpJ/\psi\, p mass spectrum in the decay Λb0J/ψpK\Lambda_b^0 \to J/\psi\, p\, K^-, making use of their combined Run~1 and Run~2 data. In the updated analysis, three narrow states, Pc(4312)+P_c (4312)^+, Pc(4440)+P_c (4440)^+, and Pc(4457)+P_c (4457)^+, are observed. The spin-parity assignments of these states are not yet known. We interpret these narrow resonances as compact hidden-charm diquark-diquark-antiquark pentaquarks. Using an effective Hamiltonian, based on constituent quarks and diquarks, we calculate the pentaquark mass spectrum for the complete SU(3)FSU (3)_F lowest SS- and PP-wave multiplets, taking into account dominant spin-spin, spin-orbit, orbital and tensor interactions. The resulting spectrum is very rich and we work out the quark flavor compositions, masses, and JPJ^P quantum numbers of the pentaquarks. However, heavy quark symmetry restricts the observable states in Λb\Lambda_b-baryon, as well as in the decays of the other weakly-decaying bb-baryons, Ξb\Xi_b and Ωb\Omega_b. In addition, some of the pentaquark states are estimated to lie below the J/ψpJ/\psi\, p threshold in Λb\Lambda_b-decays (and corresponding thresholds in Ξb\Xi_b- and Ωb\Omega_b-decays). They decay via ccˉc \bar c annihilation into light hadrons or a dilepton pair, and are expected to be narrower than the PcP_c-states observed. We anticipate their discovery, as well as of the other pentaquark states present in the spectrum at the LHC, and in the long-term future at a Tera-ZZ factory.

Keywords

Cite

@article{arxiv.2012.07760,
  title  = {Interpretation of LHCb Hidden-Charm Pentaquarks within the Compact Diquark Model},
  author = {Ahmed Ali and Ishtiaq Ahmed and M. Jamil Aslam and Alexander Parkhomenko and Abdur Rehman},
  journal= {arXiv preprint arXiv:2012.07760},
  year   = {2020}
}

Comments

3 pages. Contribution to the Proceedings of the 40th ICHEP2020 Conference, Prague, Czech Republic (Virtual Conference)