English

Semileptonic Decays and CKM Matrix Elements in a TCF

High Energy Physics - Phenomenology 2007-05-23 v1

Abstract

We argue that a Tau-Charm factory (TCF) could improve our knowledge of CKM matrix elements since it is an incomparable tool to check the models and methods applied to extract VbuV_{bu} from BB decay partial widths. We report on some recent proposals to improve on parton model. Turning to exclusive decays, we compare the predictions from quark models, QCD sum rules, effective Lagrangians and lattice QCD. Quark models have anticipated on heavy quark symmetry. Their difficutly to account for the q2q^2 dependence might be partly cured by relativistic corrections. QCD sum rules and lattice seem to disagree on the q2q^2 dependence of axial form factors. We discuss the extrapolation from DD to BB. Present uncertainties do not allow to predict reliably the B\raπ,ρlνB\ra\pi,\rho l \nu matrix elements. We argue that QCD sum rules are in a good position to study q2q^2 dependence down to q2=0q^2=0. Lattice QCD is able to check the heavy quark scaling laws for the heavy to light semileptonic decays. It seems to confirm the increase of A2/A1A_2/A_1 from DD to BB meson predicted by the scaling laws. Finally semileptonic decays in a TCF would give incomparable informations on KπK\pi phase shifts, and on KK^{**} resonances.

Keywords

Cite

@article{arxiv.hep-ph/9309230,
  title  = {Semileptonic Decays and CKM Matrix Elements in a TCF},
  author = {A. Le Yaouanc and O. Pène},
  journal= {arXiv preprint arXiv:hep-ph/9309230},
  year   = {2007}
}

Comments

17 pages, LPTHE Orsay-93/33

R2 v1 2026-07-22T14:18:28.188Z