The D*D*π and B*B*π couplings from light-cone sum rules
Chao Wang
Abstract
We revisit the calculation of the strong couplings D*D*π and B*B*π from the light-cone sum rules (LCSR) using the pion light-cone distribution amplitudes. The accuracy of the underlying correlation function is upgraded by establishing the hard-collinear factorization formula at the leading power up to the next-to-leading order in αs. Furthermore, the next-to-leading power contributions are systematically incorporated at the leading order by evaluating the two-particle and three-particle higher-twist pion distribution amplitudes up to twist-4 accuracy. By matching the QCD-level spectral representations with the hadronic dispersion relations, we present a solid numerical analysis that accounts for the finite heavy quark masses and carefully evaluates the systematic uncertainty originating from the two-dimensional quark-hadron duality ansatz. We predict gD*D*π = 5.71-0.53+0.67 GeV-1 and gB*B*π = 4.90-0.44+0.57 GeV-1. Finally, by parameterizing the 1/mH (with H=D,\,B) power corrections to extract the universal static coupling g = 0.30 0.04, we compare our results with previous theoretical determinations and experimental data, highlighting the significance of heavy quark spin symmetry breaking effects.
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