The cc resonances with negative parity in the chiral constituent quark model
Abstract
Spectrum of the low-lying cc resonances with negative parity, which are assumed to be dominated by sccqq pentaquark components, is investigated using the chiral constituent quark model. Energies of the cc resonances are obtained by considering the hyperfine interaction between quarks by exchanging Goldstone boson. Possible sccqq configurations with spin-parity 1/2-, 3/2- and 5/2- are taken into account. Numerical results show that the lowest cc resonances with negative parity may lie at 4050 100 MeV. In addition, the transitions of the cc resonance to a pseudoscalar meson and a ground baryon state are also investigated within the chiral Lagrangian approach. We expect that these cc resonances could be observed in the Dc channel by future experiments.
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