We present a lattice QCD calculation of form factors for the decay Λb→pμ−νˉ, which is a promising channel for determining the CKM matrix element ∣Vub∣ at the Large Hadron Collider. In this initial study we work in the limit of static b quarks, where the number of independent form factors reduces to two. We use dynamical domain-wall fermions for the light quarks, and perform the calculation at two different lattice spacings and at multiple values of the light-quark masses in a single large volume. Using our form factor results, we calculate the Λb→pμ−νˉ differential decay rate in the range 14GeV2≤q2≤qmax2, and obtain the integral ∫14GeV2qmax2[dΓ/dq2]dq2/∣Vub∣2=15.3±4.2ps−1. Combined with future experimental data, this will give a novel determination of ∣Vub∣ with about 15\% theoretical uncertainty. The uncertainty is dominated by the use of the static approximation for the b quark, and can be reduced further by performing the lattice calculation with a more sophisticated heavy-quark action.
@article{arxiv.1306.0446,
title = {$\Lambda_b \to p l^- \bar{\nu}$ form factors from lattice QCD with static b quarks},
author = {William Detmold and C. -J. David Lin and Stefan Meinel and Matthew Wingate},
journal= {arXiv preprint arXiv:1306.0446},
year = {2013}
}