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Chiral SU(3) Quark Model Study of Tetraquark States: cnbar{n}bar{s} / csbar{s}bar{s}

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arxiv hep-ph/0607207 v2 pith:RJPLNKE3 submitted 2006-07-19 hep-ph

Chiral SU(3) Quark Model Study of Tetraquark States: cnbar{n}bar{s} / csbar{s}bar{s}

classification hep-ph
keywords statesfour-quarkquarkmodelstatechiralauthorsbeen
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The new members of the charm-strange family $D_{sJ}^{*}(2317)$, $D_{sJ}(2460)$ and $D_s(2632)$, which have the surprising properties, are challenging the present models. Many theoretical interpretations have been devoted to this issue. Most of authors suggest that they are not the conventional $c\bar s$ quark model states, but possibly are four-quark states, molecule states or mixtures of a P-wave $c\bar s$ and a four-quark state. In this work, we follow the four-quark-state picture, and study the masses of $cn\bar n\bar s/cs\bar s\bar s$ states ($n$ is $u$ or $d$ quark) in the chiral SU(3) quark model. The numerical results show that the mass of the mixed four-quark state ($cn\bar n\bar s/cs\bar s\bar s$) with spin parity $J^P=0^{+}$ might not be $D_s(2632)$. At the same time, we also conclude that $D_{sJ}^{*}(2317)$ and $D_{sJ}(2460)$ cannot be explained as the pure four-quark state.

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Cited by 1 Pith paper

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  1. Compact $cs\bar{s}\bar{s}$ Tetraquarks in the Charm--Strange Sector: Mass Spectra, Rearrangement Decays and Regge Trajectories with $D_s$ Threshold Inputs

    hep-ph 2026-05 unverdicted novelty 5.0

    The authors compute mass spectra, rearrangement decays, and Regge trajectories for cs s-bar s-bar tetraquarks modeled as axial [cs][s-bar s-bar] systems in a Cornell potential framework with Ds threshold inputs.