Hidden charm pentaquarks and the nature of Pc states observed at LHCb
Zhi-Biao Liang, Jun-Jie Liu, Mu-Yang Chen, Xian-Hui Zhong
Abstract
We carry out a unified study of the low-lying 1S-wave compact states and hadronic molecules composed of hidden charm pentaquarks qqqcc (q=u,d) within a semirelativistic potential quark model. Apart from the linear confinement and one-gluon exchange potential between quarks and/or antiquarks, one-boson exchange potential is also included for baryon and meson clusters within the pentaquark system. We also evaluate the fall-apart decays by combining the obtained spectra within the quark exchange model. It is found that the Pc (4312)+, Pc (4440)+, and Pc (4457)+ observed by the LHCb Collaboration in 2019 can be well explained by the hadronic molecules of [ΣcD]1/2-1/2(4318), [ΣcD*]1/2-1/2(4437), and [ΣcD*]3/2-1/2(4458), respectively. Meanwhile, Pc(4380)+ reported by LHCb in 2015 may be assigned as the molecule [Σc*D]3/2-1/2(4382), except that it turns to be a narrow state other than a broad one shown by the experimental data. Our study shows that the σ- and ρ-meson exchanges are crucial for the formation of Σc(*)D(*) bound states with isospin I=1/2. Depending on the potential strength of the σ exchange, there may exist very shallow bound states of ΛcD(*) with isospin I=1/2 and Σc(*)D(*) with isospin I=3/2. Our study may provide useful information for further exploring the hidden-charm pentaquarks in future experiments.
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