The singly-charmed pentaquark molecular states via the QCD sum rules
arXiv:2307.08926 · doi:10.1142/S0217751X23501233
Abstract
In this work, we systematically investigate the singly-charmed pentaquark molecular states , and with the QCD sum rules by carrying out the operator product expansion up to the vacuum condensates of dimension 13 and taking fully account of the light-flavor breaking effects. The numerical results favor assigning the as the molecular state with the and , assigning the as the molecular state with the and , assigning the as the molecular state with the and , and assigning the as the molecular state with the and . Other potential molecule candidates are also predicted, which may be observed in future experiments. For example, we can search for the and molecular states with the isospin in the and mass spectrum respectively in the future, which could shed light on the nature of the .
23 pages, 6 figures
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