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Spectrum of $cc\bar{b}\bar{b}$, $bc\bar{c}\bar{c}$, and $bc\bar{b}\bar{b}$ Tetraquark States in the Dynamical Diquark Model

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arxiv 2208.11048 v1 pith:JYRKALPO submitted 2022-08-23 hep-ph hep-ex

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

The dynamical diquark model assumes that exotic hadrons can be formed from colored diquarks. This model asserts a multiquark exotic state composed of a compact diquark $\delta$ and antidiquark $\bar{\delta}$ for a tetraquark interacting through a gluonic field of finite extent. Using Born-Oppenheimer (BO) approximation and BO potential calculated numerically on the lattice, we study mass spectra of $S-$wave $cc\bar{b}\bar{b}$, $bc\bar{c}\bar{c}$, and $bc\bar{b}\bar{b}$ tetraquark systems in the basis of diquark spins. We assume that colour-antitriple diquark and colour-triplet antidiquark form tetraquark state. The predicted mass spectrum for ground state of $cc\bar{b}\bar{b}$ is found to be lower then their corresponding two-meson thresholds. This system may be a candidate for bound state. Masses of $bc\bar{c}\bar{c}$ and $bc\bar{b}\bar{b}$ tetraquark states are found to be above than the corresponding two-meson thresholds.

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Cited by 1 Pith paper

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  1. Hidden-Strangeness Tetraquarks in the Dynamical Diquark Model

    hep-ph 2025-05 conditional novelty 6.0 of 10

    The dynamical diquark model predicts specific hidden-strangeness tetraquark multiplets near 2-3 GeV, with a distinctive three-state S-wave fingerprint in the ssss sector and several observed resonances as candidate matches.

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