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DK, DDK, and DDDK molecules--understanding the nature of the D_(s0)^*(2317)

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arxiv 1906.11995 v1 pith:NVN7NPY2 submitted 2019-06-27 hep-ph hep-exhep-latnucl-exnucl-th

DK, DDK, and DDDK molecules--understanding the nature of the D_(s0)^*(2317)

classification hep-ph hep-exhep-latnucl-exnucl-th
keywords boundinteractionstatesdddkclusterscounterpartsexistquark
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The $DK$ interaction is strong enough to form a bound state, the $D_{s0}^*(2317)$. This in turn begs the question of whether there are bound states composed of several charmed mesons and a kaon. Previous calculations indicate that the three-body $DDK$ system is probably bound, where the quantum numbers are $J^P = 0^{-}$, $I=\tfrac{1}{2}$, $S = 1$ and $C = 2$. The minimum quark content of this state is $cc\bar{q}\bar{s}$ with $q=u,d$, which means that, if discovered, it will be an explicitly exotic tetraquark. In the present work. we apply the Gaussian Expansion Method to study the $DDDK$ system and show that it binds as well. The existence of these three and four body states is rather robust with respect to the $DD$ interaction and subleading (chiral) corrections to the $DK$ interaction. If these states exist, it is quite likely that their heavy quark symmetry counterparts exist as well. These three-body $DDK$ and four-body $DDDK$ molecular states could be viewed as counterparts of atomic nuclei, which are clusters of nucleons bound by the residual strong force, or chemical molecules, which are clusters of atoms bound by the residual electromagnetic interaction.

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Cited by 2 Pith papers

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

  1. A Paradigm for the Coupled-Channel Origin of Resonances: the Exotic $T_{c\bar{s}}$ in $D_{s1}(2460/2536)\to D_s\pi\pi$

    hep-ph 2025-10 conditional novelty 6.0

    An off-diagonal DK–D_sπ coupled-channel interaction generates the T_cbar{s} pole on the second Riemann sheet, and predicts a single-peak D_s1(2536) decay.

  2. 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.