English

Heavy pentaquark states and a novel color structure

High Energy Physics - Phenomenology 2017-02-08 v2

Abstract

Encouraged by the observation of the pentaquark states Pc+(4380)P^+_c(4380) and Pc+(4450)P^+_c(4450), we propose a novel color flux-tube structure, pentagonal state, for pentaquark states within the framework of color flux-tube mode involving a five-body confinement potential. Numerical results on the heavy pentaquark states indicate that the states with three color flux-tube structures, diquark, octet and pentagonal structures, have the close masses, which can therefore be called QCD isomers analogous to isomers in Chemistry. The pentagonal structure has lowest energy. The state Pc+(4380)P^+_c(4380) can be described as the compact pentaquark state uudccˉuudc\bar{c} with the pentagonal structure and JP=32J^P=\frac{3}{2}^- in the color flux-tube model. The state Pc+(4450)P^+_c(4450) can not be accommodated into the color flux-tube model. The heavy pentaquark states uudcbˉuudc\bar{b}, uudbcˉuudb\bar{c} and uudbbˉuudb\bar{b} are predicted in the color flux-tube model. The five-body confinement potential basing on the color flux-tube picture as a collective degree of freedom is a dynamical mechanism in the formation of the compact heavy pentaquark states.

Keywords

Cite

@article{arxiv.1608.03940,
  title  = {Heavy pentaquark states and a novel color structure},
  author = {Chengrong Deng and Jialun Ping and Hongxia Huang and Fan Wang},
  journal= {arXiv preprint arXiv:1608.03940},
  year   = {2017}
}

Comments

7 pages, 1 figure and 3 tables