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arxiv: 1904.00851 · v2 · pith:F3UNNHUXnew · submitted 2019-04-01 · ✦ hep-ph

Anatomy of the newly observed hidden-charm pentaquark states: P_c(4312), P_c(4440) and P_c(4457)

classification ✦ hep-ph
keywords sigmachannelspentaquarkstatescalculatedcompositenesshidden-charmincluding
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We study the newly reported hidden-charm pentaquark candidates $P_c(4312)$, $P_c(4440)$ and $P_c(4457)$ from the LHCb Collaboration, in the framework of the effective-range expansion and resonance compositeness relations. The scattering lengths and effective ranges from the $S$-wave $\Sigma_c\bar{D}$ and $\Sigma_c\bar{D}^*$ scattering are calculated by using the experimental results of the masses and widths of the $P_c(4312)$, $P_c(4440)$ and $P_c(4457)$. Then we calculate the couplings between the $J/\psi p,\,\Sigma_c\bar{D}$ channels and the pentaquark candidate $P_c(4312)$, with which we further estimate the probabilities of finding the $J/\psi p$ and $\Sigma_c\bar{D}$ components inside $P_c(4312)$. The partial decay widths and compositeness coefficients are calculated for the $P_c(4440)$ and $P_c(4457)$ states by including the $J/\psi p$ and $\Sigma_c\bar{D}^*$ channels. Similar studies are also carried out for the three $P_c$ states by including the $\Lambda_c\bar{D}^{*}$ and $\Sigma_c\bar{D}^{(*)}$ channels.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Doubly charmed baryon-light meson scattering in chiral effective theory with lattice constraints

    hep-ph 2026-06 unverdicted novelty 5.0

    Chiral EFT with lattice-fitted LECs and unitarization predicts resonance, virtual, and bound states plus scattering parameters for doubly charmed baryon-meson systems at physical quark masses.

  2. Radiative decays of dynamically generated pentaquarks in the chiral unitary approach: the $P_c(4457)\to P_c(4312)\,\gamma$ transition

    hep-ph 2026-06 unverdicted novelty 5.0

    The M1 radiative decay width Pc(4457)(3/2-) → Pc(4312)(1/2-)γ is computed as 6.7 keV (range 2-9 keV) via 19 triangle loops with photon coupling to molecular components.

  3. Study of the molecular Properties of the $P_c$ and $P_{cs}$ States

    hep-ph 2026-04 unverdicted novelty 5.0

    Coupled-channel calculations show Pc and Pcs states as molecular bound states with RMS radii 0.5-2 fm when heavy-quark spin symmetry is respected across all channels.