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Implication of the existence of J^(PC)=0⁻⁻ bar{D}_sDK bound state on nature of D_(s0)^*(2317) and new configuration of exotic state

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arxiv 2501.11358 v2 pith:7WHU6ODN submitted 2025-01-20 hep-ph

Implication of the existence of J^(PC)=0⁻⁻ bar{D}_sDK bound state on nature of D_(s0)^*(2317) and new configuration of exotic state

classification hep-ph
keywords statehadronicexotichadronsmolecularmoleculepredictedthree-body
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The discovery of numerous new hadrons over the past two decades has provided unprecedented opportunities to understand the non-perturbative QCD and hadron structure. Hadronic molecule picture plays an important role in explaining these new hadrons and enriching the configurations of exotic hadronic states. In this letter, using the model-independent $DK$ potential extracted from the relevant experimental data, a $J^{PC}=0^{--}$ $\bar{D}_sDK$ three-body hadronic molecule is predicted with a mass of $4310^{+14}_{-24}$ MeV. This state shows decoupling to conventional $c\bar{c}$ charmonia or the $\bar{D}_s D_{s0}^*(2317)$ two-body molecular state. It can be regarded as a compelling three-body hadronic molecular candidate. We further demonstrate that the $B^+ \to {D}^{*\pm}D^\mp K^+$ decays could be promising channels for searching for the predicted state in future high-luminosity LHCb runs.

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Forward citations

Cited by 3 Pith papers

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

  1. Coupled-channel study of the three-body $DDK$ and $D^{*}D^{*}K$

    hep-ph 2026-04 unverdicted novelty 5.0

    The DDK system supports a deeply bound compact state across wide parameters and possibly a shallow three-body halo state near the D-DK threshold, with negligible D*D*K coupling and no resonances.

  2. Decay constants of the two-pole $D_0^*(2300)$

    hep-ph 2026-07 conditional novelty 4.0

    Molecular two-pole D0*(2300) decay constants are 65 and 81 MeV—much smaller than compact c¯q estimates—and imply Cabibbo-favored b-hadron branching fractions of order 10^{-5}.

  3. Three-body molecular states composed of $D^{(*)}$ and two nucleons

    hep-ph 2026-02 unverdicted novelty 4.0

    The DNN system forms a robust compact bound state in the I=1/2 (1^-) channel across cutoffs, while D*NN exhibits spin-dependent bound states in 0^-, 1^-, and 2^- channels with no resonances found.