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The $X(4500)$ state considered as the mixture of hadronic molecule and diquark-antidiquark within effective field theory

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arxiv 2410.05749 v1 pith:MF2NX5RY submitted 2024-10-08 hep-ph hep-ex

classification hep-phhep-ex
keywords effectivecomponentdiquark-antidiquarkfieldmixturetheoryadditionanother
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

In the present work, we construct the Lagrangians including three-meson, meson-diquark-antidiquark vertices, such that the diquark-antidiquark component as well as the molecular component are introduced within the effective field theory. With the obtained effective potentials projecting to spin 0, 1 and 2, we solve the Bethe-Salpeter equation with the on-shell approximation, and find that $X(4500)$ can be explained as the mixture of components $D_{s}^{*+}D_{s}^{*-}$, ${A}_{cq}\bar{A}_{cq}$ and ${A}_{cs}\bar{A}_{cs}$ with $I^G(J^{PC})=0^+(0^{++})$. In addition, another two resonances with quantum numbers $I^G(J^{PC})=0^+(1^{++})$ and $I^G(J^{PC})=0^+(2^{++})$ are predicted.

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  1. Study on the structure of the $Z_{c}(3900)$ state

    hep-ph 2024-12 conditional novelty 5.0 of 10

    An effective field theory calculation finds that the Zc(3900) resonance is naturally described as a coupled-channel mixture of D Dbar* and diquark-antidiquark components, with the diquark part dominating.

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