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Studying the heavy quark spin symmetry multiplet of hadronic molecules $\bar{D}^{(*)}\Sigma_c^{(*)}$ in the three-body decays of $\bar{D}^{(*)}\Lambda_c \pi$

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arxiv 2407.17318 v2 pith:KCH55TM5 submitted 2024-07-24 hep-ph

classification hep-ph
keywords lambdamoleculesdecaydecayshadronicheavyhidden-charmmultiplet
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The decay behavior of an exotic state can be used to probe its internal structure. We note that the hidden-charm pentaquark states, $P_{\psi}^{N}(4312)$, $P_{\psi}^{N}(4440)$, and $P_{\psi}^{N}(4457)$, have only been observed in the $J/\psi p$ channel. In this work, we employ the effective Lagrangian approach to systematically investigate the two-body and three-body decays of the heavy quark spin symmetry multiplet of hadronic molecules $\bar{D}^{(*)}\Sigma_c^{(*)}$. Our results show that the partial decay widths of the hidden-charm pentaquark molecules into $\bar{D}^{(*)}\Lambda_c \pi$ are sizable so that $\bar{D}^{(*)}\Lambda_c \pi$ are promising channels to search for them, which can help clarify their molecular nature.

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Cited by 1 Pith paper

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  1. Investigation of full heavy $ QQQQ'\bar{Q}$ pentaquark candidates

    hep-ph 2025-02 conditional novelty 4.0 of 10

    QCD sum rules predict a pentaquark with three charm quarks, one bottom quark, and an anti-charm quark near 11.38 GeV, and a pentaquark with three bottom quarks, one charm quark, and an anti-bottom quark near 21.0 GeV,...

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