English

The Decay $B\to\pi\ell\nu$ in Heavy Quark Effective Theory

High Energy Physics - Phenomenology 2010-11-01 v1

Abstract

We present a systematic analysis of the B()πνB^{(*)}\to\pi\,\ell\,\nu weak decay form factors to order 1/mb1/m_b in the heavy quark effective theory, including a discussion of renormalization group effects. These processes are described by a set of ten universal functions (two at leading order, and eight at order 1/mb1/m_b), which are defined in terms of matrix elements of operators in the effective theory. In the soft pion limit, the effective theory yields normalization conditions for these functions, which generalize the well-known current algebra relations derived from the combination of heavy quark and chiral symmetries to next-to-leading order in 1/mb1/m_b. In particular, the effects of the nearby BB^*-pole are correctly contained in the form factors of the effective theory. We discuss the prospects for a model independent determination of Vub|V_{ub}| and the BBπB B^*\pi coupling constant from these processes.

Keywords

Cite

@article{arxiv.hep-ph/9309272,
  title  = {The Decay $B\to\pi\ell\nu$ in Heavy Quark Effective Theory},
  author = {Gustavo Burdman and Zoltan Ligeti and Matthias Neubert and Yosef Nir},
  journal= {arXiv preprint arXiv:hep-ph/9309272},
  year   = {2010}
}

Comments

26 pages in ReVTeX 3.0, figures appended as postscript file, SLAC-PUB-6345