English

Precision calculations of $B \to V$ form factors in QCD

High Energy Physics - Phenomenology 2020-05-06 v1 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

Applying the vacuum-to-BB-meson correlation functions with an interpolating current for the light vector meson we construct the light-cone sum rules (LCSR) for the "effective" form factors ξ(np)\xi_{\parallel}(n \cdot p), ξ(np)\xi_{\perp}(n \cdot p), Ξ(τ,np)\Xi_{\parallel}(\tau, n \cdot p) and Ξ(τ,np)\Xi_{\perp}(\tau, n \cdot p), defined by the corresponding hadronic matrix elements in soft-collinear effective theory (SCET), entering the leading-power factorization formulae for QCD form factors responsible for BVνˉB \to V \ell \bar \nu_{\ell} and BVˉB \to V \ell \bar \ell decays at large hadronic recoil at next-to-leading-order in QCD. The light-quark mass effect for the local SCET form factors ξ(np)\xi_{\parallel}(n \cdot p) and ξ(np)\xi_{\perp}(n \cdot p) is also computed from the LCSR method with the BB-meson light-cone distribution amplitude ϕB+(ω,μ)\phi_B^{+}(\omega, \mu) at O(αs){\cal O}(\alpha_s). Furthermore, the subleading power corrections to BVB \to V form factors from the higher-twist BB-meson light-cone distribution amplitudes are also computed with the same method at tree level up to the twist-six accuracy. Having at our disposal the LCSR predictions for BVB \to V form factors, we further perform new determinations of the CKM matrix element Vub|V_{ub}| from the semileptonic BρνˉB \to \rho \, \ell \, \bar \nu_{\ell} and BωνˉB \to \omega \, \ell \, \bar \nu_{\ell} decays, and predict the normalized differential branching fractions and the q2q^2-binned KK^{\ast} longitudinal polarization fractions of the exclusive rare BKννˉB \to K^{\ast} \, \nu_{\ell} \, \bar \nu_{\ell} decays.

Keywords

Cite

@article{arxiv.1907.11092,
  title  = {Precision calculations of $B \to V$ form factors in QCD},
  author = {Jing Gao and Cai-Dian Lü and Yue-Long Shen and Yu-Ming Wang and Yan-Bing Wei},
  journal= {arXiv preprint arXiv:1907.11092},
  year   = {2020}
}

Comments

76 pages, 15 figures