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QCD Sum Rules for the production of the X(3872) as a mixed molecule-charmonium state in B meson decay
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abstract
We use QCD sum rules to calculate the branching ratio for the production of the meson X(3872) in the decay $B\to X(3872)K$, assumed to be a mixture between charmonium and exotic molecular $[c\bar{q}][q\bar{c}]$ states with $J^{PC}=1^{++}$. We find that in a small range for the values of the mixing angle, $5^\circ\leq\theta\leq13^\circ$, we get the branching ratio ${\mathcal{B}}(B\to XK)=(1.00\pm0.68)\times10^{-5}$, which is in agreement with the experimental upper limit. This result is compatible with the analysis of the mass and decay width of the mode $J/\psi(n\pi)$ and the radiative decay mode $J/\psi\gamma$ performed in the same approach.
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$T_{cc}$ and Hidden Charm Tetraquarks $1^+$ and $0^+$in QCD sum rules and Heavy-Quark Spin Symmetry
Mass differences among Tcc and hidden charm tetraquarks are predicted with O(10 MeV) precision, yielding m(1+) = 3887.3 ± 7.5 MeV and m(0+) = 3901.9 ± 12.5 MeV when the measured Tcc mass is used as input.
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