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Revisiting DD-meson twist-2, 3 distribution amplitudes

Published 9 Dec 2022 in hep-ph | (2212.04641v2)

Abstract: Due to the significant difference between the experimental measurements and the theoretical predictions of standard model (SM) for the value of R(D)\mathcal{R}(D) of the semileptonic decay B→Dℓνˉ<em>ℓB\to D\ell\bar{\nu}<em>{\ell}, people speculate that it may be the evidence of new physics beyond the SM. Usually, the DD-meson twist-2, 3 distribution amplitudes (DAs) ϕ</em>2;D(x,μ)\phi</em>{2;D}(x,\mu), ϕ3;D<sup>p(x,μ)\phi_{3;D}<sup>p(x,\mu) and ϕ3;D<sup>σ(x,μ)\phi_{3;D}<sup>\sigma(x,\mu) are the main error sources when using perturbative QCD factorization and light-cone QCD sum rules to study B→Dℓνˉ<em>ℓB\to D\ell\bar{\nu}<em>{\ell}. Therefore, it is important to get more reasonable and accurate behaviors for those DAs. Motivated by our previous work [Phys. Rev. D 104, no.1, 016021 (2021)] on pionic leading-twist DA, we revisit DD-meson twist-2, 3 DAs ϕ</em>2;D(x,μ)\phi</em>{2;D}(x,\mu), ϕ3;D<sup>p(x,μ)\phi_{3;D}<sup>p(x,\mu) and ϕ3;D<sup>σ(x,μ)\phi_{3;D}<sup>\sigma(x,\mu). New sum rules formulae for the ξ\xi-moments of these three DAs are suggested to obtain more accurate values. The light-cone harmonic oscillator models for those DAs are improved, and whose model parameters are determined by fitting the values of ξ\xi-moments with the least squares method.

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