6,282 research outputs found

    Analysis of the tensor-tensor type scalar tetraquark states with QCD sum rules

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    In this article, we study the ground states and the first radial excited states of the tensor-tensor type scalar hidden-charm tetraquark states with the QCD sum rules. We separate the ground state contributions from the first radial excited state contributions unambiguously, and obtain the QCD sum rules for the ground states and the first radial excited states, respectively. Then we search for the Borel parameters and continuum threshold parameters according to four criteria and obtain the masses of the tensor-tensor type scalar hidden-charm tetraquark states, which can be confronted to the experimental data in the future.Comment: 12 pages, 4 figures. arXiv admin note: text overlap with arXiv:1607.0484

    The decay width of the Zc(3900)Z_c(3900) as an axialvector tetraquark state in solid quark-hadron duality

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    In this article, we tentatively assign the Zc±(3900)Z_c^\pm(3900) to be the diquark-antidiquark type axialvector tetraquark state, study the hadronic coupling constants GZcJ/ψπG_{Z_cJ/\psi\pi}, GZcηcρG_{Z_c\eta_c\rho}, GZcDDˉG_{Z_cD \bar{D}^{*}} with the QCD sum rules in details. We take into account both the connected and disconnected Feynman diagrams in carrying out the operator product expansion, as the connected Feynman diagrams alone cannot do the work. Special attentions are paid to matching the hadron side of the correlation functions with the QCD side of the correlation functions to obtain solid duality, the routine can be applied to study other hadronic couplings directly. We study the two-body strong decays Zc+(3900)J/ψπ+Z_c^+(3900)\to J/\psi\pi^+, ηcρ+\eta_c\rho^+, D+Dˉ0D^+ \bar{D}^{*0}, Dˉ0D+\bar{D}^0 D^{*+} and obtain the total width of the Zc±(3900)Z_c^\pm(3900). The numerical results support assigning the Zc±(3900)Z_c^\pm(3900) to be the diquark-antidiquark type axialvector tetraquark state, and assigning the Zc±(3885)Z_c^\pm(3885) to be the meson-meson type axialvector molecular state.Comment: 16 pages, 3 figure
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