Non-Perturbative Bounds for Semileptonic Decays in Lattice QCD
Abstract
We present a new method aiming at a non-perturbative, model-independent determination of the momentum dependence of the form factors entering semileptonic decays using unitarity and analyticity constraints. We extend the original proposal and, using suitable two-point functions computed non-perturbatively, we determine the form factors at low-momentum transfer from those computed explicitly on the lattice at large , without making any assumption about their dependence. As a training ground we apply the new method to the analysis of the lattice data of the semileptonic decays obtained both at finite values of the lattice spacing and at the physical pion point in the continuum limit. We show that, starting from a limited set of data at large , it is possible to determine quite precisely the form factors in a model independent way in the full kinematical range, obtaining a remarkable agreement with the direct calculation of the form factors. This finding opens the possibility to obtain non-perturbatively the form factors entering the semileptonic B decays in the full kinematical range.
Keywords
Cite
@article{arxiv.2111.14424,
title = {Non-Perturbative Bounds for Semileptonic Decays in Lattice QCD},
author = {Matteo Di Carlo and Guido Martinelli and Manuel Naviglio and Francesco Sanfilippo and Silvano Simula and Ludovico Vittorio},
journal= {arXiv preprint arXiv:2111.14424},
year = {2021}
}
Comments
11 pages, 4 figures. Talk presented at the 38th International Symposium on Lattice Field Theory (Lattice 2021), 26-30 July, 2021, Zoom/Gather@Massachusetts Institute of Technology