AbstractWe use QCD sum rules to calculate the branching ratio for the production of the meson X(3872) in the decay B→X(3872)K, assumed to be a mixture between charmonium and exotic molecular [cq¯][qc¯] states with JPC=1++. We find that in a small range for the values of the mixing angle, 5°⩽θ⩽13°, we get the branching ratio B(B→XK)=(1.00±0.68)×10−5, 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/ψ(nπ) and the radiative decay mode J/ψγ performed in the same approach
It has been suggested that the radiative $X \to D \bar D \gamma$ decay modes are useful to shed ligh...
We use QCD sum rules (QCDSR) to calculate the width of the radiative decay of the meson X(3872), ass...
We use QCD sum rules (QCDSR) to calculate the width of the radiative decay of the meson X(3872), ass...
We use QCD sum rules to calculate the branching ratio for the production of the meson X(3872) in the...
AbstractWe use QCD sum rules to calculate the branching ratio for the production of the meson X(3872...
We use QCD sum rules to calculate the branching ratio for the production of the meson X(3872) in the...
We use QCD sum rules to calculate the branching ratio for the production of the meson X(3872) in the...
We use QCD sum rules to calculate the width of the radiative decay of the meson X(3872), assumed to ...
We use QCD sum rules to calculate the branching ratio for the production of the meson X(3872) in the...
Using the pictures for X(3872) as a mixture of charmonium and molecular D∗0D0 states; Y(3940) as a m...
We use QCD spectral sum rules to test the nature of the meson X(3872), assumed to be an exotic four-...
AbstractNew spectroscopy from the B factories, the advent of CLEO-c and the BES upgrade renewed the ...
We use QCD sum rules to test the nature of the meson X(3872), assumed to be a mixture between charmo...
The nature of the meson X(3872) is still under debate. Here we assume it to be a mixture between ch...
We calculate the branching ratio for the production of the meson Y(4260) in the decay B−→Y(4260)K− ....
It has been suggested that the radiative $X \to D \bar D \gamma$ decay modes are useful to shed ligh...
We use QCD sum rules (QCDSR) to calculate the width of the radiative decay of the meson X(3872), ass...
We use QCD sum rules (QCDSR) to calculate the width of the radiative decay of the meson X(3872), ass...
We use QCD sum rules to calculate the branching ratio for the production of the meson X(3872) in the...
AbstractWe use QCD sum rules to calculate the branching ratio for the production of the meson X(3872...
We use QCD sum rules to calculate the branching ratio for the production of the meson X(3872) in the...
We use QCD sum rules to calculate the branching ratio for the production of the meson X(3872) in the...
We use QCD sum rules to calculate the width of the radiative decay of the meson X(3872), assumed to ...
We use QCD sum rules to calculate the branching ratio for the production of the meson X(3872) in the...
Using the pictures for X(3872) as a mixture of charmonium and molecular D∗0D0 states; Y(3940) as a m...
We use QCD spectral sum rules to test the nature of the meson X(3872), assumed to be an exotic four-...
AbstractNew spectroscopy from the B factories, the advent of CLEO-c and the BES upgrade renewed the ...
We use QCD sum rules to test the nature of the meson X(3872), assumed to be a mixture between charmo...
The nature of the meson X(3872) is still under debate. Here we assume it to be a mixture between ch...
We calculate the branching ratio for the production of the meson Y(4260) in the decay B−→Y(4260)K− ....
It has been suggested that the radiative $X \to D \bar D \gamma$ decay modes are useful to shed ligh...
We use QCD sum rules (QCDSR) to calculate the width of the radiative decay of the meson X(3872), ass...
We use QCD sum rules (QCDSR) to calculate the width of the radiative decay of the meson X(3872), ass...