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Threshold corrections of chi_(rm c)(2P) and chi_(rm b)(3P) states and J/psi rho and J/psi ω transitions of the X(3872) in a coupled-channel model

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arxiv 1806.02489 v6 pith:QFDBIBIH submitted 2018-06-07 hep-ph nucl-th

Threshold corrections of chi_(rm c)(2P) and chi_(rm b)(3P) states and J/psi rho and J/psi ω transitions of the X(3872) in a coupled-channel model

classification hep-ph nucl-th
keywords correctionsomegathresholdcomponentsmodelstatescharacterizedcoupled-channel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We calculate the masses of $\chi_{\rm c}(2P)$ and $\chi_{\rm b}(3P)$ states with threshold corrections in a coupled-channel model. Here, the meson quarkonium core is augmented by higher Fock components due to pair-creation effects. According to our results, we interpret the resonances characterized by very small threshold corrections, like $\chi_{\rm b}(3P)$'s, as almost pure quarkonia, and those states characterized by non-negligible threshold corrections, like the $X(3872)$, as quarkonium cores plus meson-meson components. We also study the $J/\psi \rho$ and $J/\psi \omega$ hidden-flavor strong decays of the $X(3872)$. The decays are calculated as the dissociation of one of these components ($D^0 \bar D^{0*}$) into a $c \bar c$ state ($J/\psi$) plus a light meson ($\rho$ or $\omega$) in a potential model. In particular, our result for the ratio between the $X(3872) \rightarrow J/\psi \omega$ and $J/\psi \rho$ widths (0.6) is compatible with the present experimental data ($0.8\pm0.3$) within the experimental error.

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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. Open-flavor threshold effects on quarkonium spectrum in the BOEFT

    hep-ph 2026-04 unverdicted novelty 7.0

    BOEFT quantifies threshold-induced shifts in quarkonium masses below threshold by solving coupled Schrödinger equations using lattice potentials and one parameter fixed to the χ_c1(3872) mass.

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    A multimodal, uncertainty-quantified set of leading-power fragmentation functions for all-charm pentaquarks is constructed and applied to NLL/NLO+ pentaquark-plus-jet production at future hadron colliders.

  3. Multimodal Fragmentation of All-Heavy Pentaquarks: Uncertainty-Aware Predictions for Hadron Colliders

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    Develops uncertainty-aware fragmentation functions PQ5Q1.1 for all-charm pentaquarks using multimodal perturbative and nonperturbative modeling for collider predictions.