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Hidden charm pentaquark states in a diquark model

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arxiv 2107.08680 v1 pith:CNYA22NF submitted 2021-07-19 hep-ph nucl-th

classification hep-phnucl-th
keywords pentaquarkcharmhiddenstatesleftrightstateexplained
verification ladder T0 review T1 audit T2 compute T3 formal

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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 $P_c(4312)^+$ and $P_c(4440)^+$ states could be explained as hidden charm pentaquark states with isospin and spin-parity $IJ^P=1/2\left(3/2^-\right)$, the $P_c(4457)^+$ state could be explained as a hidden charm pentaquark state with $IJ^P=1/2\left(5/2^-\right)$, and the $P_{cs}(4459)^+$ state could be explained as a hidden charm pentaquark state with $IJ^P=0\left(1/2^-\right)$ or $0\left(3/2^-\right)$. 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.

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Cited by 1 Pith paper

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  1. A study on the properties of hidden-charm pentaquarks with double strangeness

    hep-ph 2025-05 conditional novelty 5.0 of 10

    Five hidden-charm double-strange pentaquark resonances are predicted in the QDCSM with masses between 4600 and 4772 MeV, along with widths and dominant decay channels.

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