English

$P_c(4457)^+$, $P_c(4440)^+$, and $P_c(4312)^+$: molecules or compact pentaquarks?

High Energy Physics - Phenomenology 2019-09-11 v2 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Theory

Abstract

In a chromomagnetic model, we analyse the properties of the newly observed Pc(4457)+P_c(4457)^+, Pc(4440)+P_c(4440)^+, and Pc(4312)+P_c(4312)^+ states. We estimate the masses of the (uud)8c(ccˉ)8c(uud)_{8_c}(c\bar{c})_{8_c} and (uds)8c(ccˉ)8c(uds)_{8_c}(c\bar{c})_{8_c} pentaquark states by considering the isospin breaking effects. Their values are determined by calculating mass distances from the Σc++D\Sigma_c^{++}D^- and Ξc+D\Xi_c^{\prime+}D^- thresholds, respectively. It is found that the isospin breaking effects on the spectrum are small. From the uncertainty consideration and the rearrangement decay properties in a simple model, we find that it is possible to assign the Pc(4457)+P_c(4457)^+, Pc(4440)+P_c(4440)^+, and Pc(4312)+P_c(4312)^+ as JP=3/2J^P=3/2^-, 1/21/2^-, and 3/23/2^- pentaquark states, respectively. The assignment in the molecule picture can be different, in particular for the Pc(4312)+P_c(4312)^+. The information from open-charm channels, e.g. B[PcΣc++D]/B[PcJ/ψp]{\cal B}[P_c\to\Sigma_c^{++}D^-]/{\cal B}[P_c\to J/\psi p], will play an important role in distinguishing the inner structures of the PcP_c states. Discussions and predictions based on the calculations are also given.

Keywords

Cite

@article{arxiv.1905.08605,
  title  = {$P_c(4457)^+$, $P_c(4440)^+$, and $P_c(4312)^+$: molecules or compact pentaquarks?},
  author = {Jian-Bo Cheng and Yan-Rui Liu},
  journal= {arXiv preprint arXiv:1905.08605},
  year   = {2019}
}

Comments

15 pages, 2 figures, 8 tables. Version accepted by PRD