English

$\Lambda_b \to p \ell^- \bar{\nu}_\ell$ and $\Lambda_b \to \Lambda_c \ell^- \bar{\nu}_\ell$ form factors from lattice QCD with relativistic heavy quarks

High Energy Physics - Lattice 2015-08-05 v3 High Energy Physics - Experiment High Energy Physics - Phenomenology

Abstract

Measurements of the Λbpνˉ\Lambda_b \to p \ell^- \bar{\nu}_\ell and ΛbΛcνˉ\Lambda_b \to \Lambda_c \ell^- \bar{\nu}_\ell decay rates can be used to determine the magnitudes of the CKM matrix elements VubV_{ub} and VcbV_{cb}, provided that the relevant hadronic form factors are known. Here we present a precise calculation of these form factors using lattice QCD with 2+1 flavors of dynamical domain-wall fermions. The bb and cc quarks are implemented with relativistic heavy-quark actions, allowing us to work directly at the physical heavy-quark masses. The lattice computation is performed for six different pion masses and two different lattice spacings, using gauge-field configurations generated by the RBC and UKQCD collaborations. The bub \to u and bcb \to c currents are renormalized with a mostly nonperturbative method. We extrapolate the form factor results to the physical pion mass and the continuum limit, parametrizing the q2q^2-dependence using zz-expansions. The form factors are presented in such a way as to enable the correlated propagation of both statistical and systematic uncertainties into derived quantities such as differential decay rates and asymmetries. Using these form factors, we present predictions for the Λbpνˉ\Lambda_b \to p \ell^- \bar{\nu}_\ell and ΛbΛcνˉ\Lambda_b \to \Lambda_c \ell^- \bar{\nu}_\ell differential and integrated decay rates. Combined with experimental data, our results enable determinations of Vub|V_{ub}|, Vcb|V_{cb}|, and Vub/Vcb|V_{ub}/V_{cb}| with theory uncertainties of 4.4%, 2.2%, and 4.9%, respectively.

Keywords

Cite

@article{arxiv.1503.01421,
  title  = {$\Lambda_b \to p \ell^- \bar{\nu}_\ell$ and $\Lambda_b \to \Lambda_c \ell^- \bar{\nu}_\ell$ form factors from lattice QCD with relativistic heavy quarks},
  author = {William Detmold and Christoph Lehner and Stefan Meinel},
  journal= {arXiv preprint arXiv:1503.01421},
  year   = {2015}
}

Comments

40 pages, 15 figures, form factor parameters included as ancillary files. v3: new definitions of z-expansion parameters t_+ and other minor improvements