The determinations of ∣Vub∣ from the exclusive branching ratios of B→τν and B→πlν tend to show a tension at the level of 3σ \cite{Beringer:1900zz}. On the theoretical side they depend on the lattice computation of the hadronic matrix elements fB and the B→π form factor f+(q2). To understand the tension, improved precision and a careful analysis of the systematics involved are necessary. Working towards this goal, we present preliminary lattice results of the ALPHA collaboration for the B→π form factor f+(q2) with Nf=2 flavours of O(a)-improved Wilson fermions. Our computation uses HQET in the static limit, pion masses ranging down to ∼250 MeV, large volumes with mπL>4, three lattice spacings, and non-perturbative renormalization. We describe the techniques adopted to reduce the statistical noise (stochastic all-to-all with full time dilution) and the contamination from excited states (smearing for the B and the pion). We estimate the size of the chiral and continuum extrapolations. We discuss the impact our result could have to clarify the above mentioned discrepancy in the determination of ∣Vub∣.
@article{arxiv.1210.3478,
title = {B $\to$ $\pi$ form factor with 2 flavours of $O(a)$ improved Wilson quarks},
author = {Felix Bahr and Fabio Bernardoni and John Bulava and Alberto Ramos and Hubert Simma and Rainer Sommer},
journal= {arXiv preprint arXiv:1210.3478},
year = {2012}
}
Comments
7 pages, 6 figures. proceedings for the 2012 lattice conference, cairns, australia