arXiv · 2011.11275
The $D^*D \pi$ and $B^*B\pi$ couplings from light-cone sum rules
Abstract
We revisit the calculation of the strong couplings $D^*D\pi$ and $B^*B\pi$ from the QCD light-cone sum rules using the pion light-cone distribution amplitudes. The accuracy of the correlation function, calculated from the operator product expansion near the light-cone, is upgraded by taking into account the gluon radiative corrections to the twist-3 terms. The double spectral density of the correlation function, including the twist-2, 3 terms at ${\cal O} (\alpha_s)$ and the twist-4 LO terms, is presented in an analytical form for the first time. This form allows us to use various versions of the quark-hadron duality regions in the double dispersion relation underlying the sum rules. We predict $g_{D^*D\pi}=14.1^{+1.3}_{-1.2}$ and $g_{B^*B\pi}=30.0^{+2.6}_{-2.4}$ when the decay constants of heavy mesons entering the light-cone sum rule are taken from lattice QCD results. We compare our results with the experimental value for the charmed meson coupling and with the lattice QCD calculations.
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Alexander Khodjamirian, Blaženka Melić, Yu-Ming Wang, Yan-Bing Wei. 2020-11-23. The $D^*D \pi$ and $B^*B\pi$ couplings from light-cone sum rules. https://doi.org/10.1007/jhep03(2021)016
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