$V_{cb}$ determination from inclusive $b \to c$ decays: an alternative method
Abstract
The determination of relies on the Heavy-Quark Expansion and the extraction of the non-perturbative matrix elements from inclusive decays. The proliferation of these matrix elements complicates their extraction at and higher, thereby limiting the extraction. Reparametrization invariance links different operators in the Heavy-Quark expansion thus reducing the number of independent operators at to eight for the total rate. We show that this reduction also holds for spectral moments as long as they are defined by reparametrization invariant weight-functions. This is valid in particular for the leptonic invariant mass spectrum (), i.e. the differential rate and its moments. Currently, is determined by fitting the energy and hadronic mass moments, which do not manifest this parameter reduction and depend on the full set of 13 matrix elements up to . In light of this, we propose an experimental analysis of the moments to open the possibility of a model-independent extraction from semileptonic decays including the terms in a fully data-driven way.
Cite
@article{arxiv.1812.07472,
title = {$V_{cb}$ determination from inclusive $b \to c$ decays: an alternative method},
author = {Matteo Fael and Thomas Mannel and K. Keri Vos},
journal= {arXiv preprint arXiv:1812.07472},
year = {2019}
}
Comments
16 pages, 2 figures. v2: version published in JHEP, references added plus minor changes