English

Hidden charm pentaquark states in a diquark model

High Energy Physics - Phenomenology 2021-07-20 v1 Nuclear Theory

Abstract

The mass spectrum of hidden charm pentaquark states composed of two diquarks and an antiquark are calculated by use of an effective Hamiltonian which includes explicitly the spin, color, and flavor dependent interactions. The results show that the Pc(4312)+P_c(4312)^+ and Pc(4440)+P_c(4440)^+ states could be explained as hidden charm pentaquark states with isospin and spin-parity IJP=1/2(3/2)IJ^P=1/2\left(3/2^-\right), the Pc(4457)+P_c(4457)^+ state could be explained as a hidden charm pentaquark state with IJP=1/2(5/2)IJ^P=1/2\left(5/2^-\right), and the Pcs(4459)+P_{cs}(4459)^+ state could be explained as a hidden charm pentaquark state with IJP=0(1/2)IJ^P=0\left(1/2^-\right) or 0(3/2)0\left(3/2^-\right). Predications for the masses of other possible pentaquark states are also given, and the possible decay channels of these hidden charm pentaquark states are discussed.

Keywords

Cite

@article{arxiv.2107.08680,
  title  = {Hidden charm pentaquark states in a diquark model},
  author = {Pan-Pan Shi and Fei Huang and Wen-Ling Wang},
  journal= {arXiv preprint arXiv:2107.08680},
  year   = {2021}
}

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9 pages