English

The $\bar{B}\to \pi$ form factors from QCD and their impact on $|V_{ub}|$

High Energy Physics - Phenomenology 2021-07-21 v2

Abstract

We revisit light-cone sum rules with pion distribution amplitudes to determine the full set of local BπB \to \pi form factors. To this end, we determine all duality threshold parameters from a Bayesian fit for the first time. Our results, obtained at small momentum transfer q2q^2, are extrapolated to large q2q^2 where they agree with precise lattice QCD results. We find that a modification to the commonly used BCL parametrization is crucial to interpolate the scalar form factor between the two q2q^2 regions. We provide numerical results for the form factor parameters -- including their covariance -- based on simultaneous fit of all three form factors to both the sum rule and lattice QCD results. Our predictions for the form factors agree well with measurements of the q2q^2 spectrum of the semileptonic decay Bˉ0π+νˉ\bar{B}^0\to \pi^+\ell^-\bar\nu. From the world average of the latter we obtain Vub=(3.77±0.15)103|V_{ub}| = (3.77 \pm 0.15)\cdot 10^{-3}, which is in agreement with the most recent inclusive determination at the 1σ1\,\sigma level.

Keywords

Cite

@article{arxiv.2102.07233,
  title  = {The $\bar{B}\to \pi$ form factors from QCD and their impact on $|V_{ub}|$},
  author = {Domagoj Leljak and Blaženka Melić and Danny van Dyk},
  journal= {arXiv preprint arXiv:2102.07233},
  year   = {2021}
}

Comments

33 pages, 8+1 figures, 9+1 tables; In the resubmitted version - an integrated LCSR form factor prediction is presented, several clarifications are made concerning pole masses, and typos corrected