English

Generalized Factorization in Non-leptonic Two-Body B-Decays: a Critical Look

High Energy Physics - Phenomenology 2009-10-31 v1

Abstract

We reanalyze critically the generalized factorization hypothesis in non-leptonic two-body B-decays discussed recently by several authors. In particular we address the determination of the factorization scale μf\mu_f and of the non-perturbative parameters ξ1NF(mb)\xi^{NF}_1 (m_b) and ξ2NF(mb)\xi^{NF}_2 (m_b) which are supposed to measure non-factorizable contributions to hadronic matrix elements with ξiNF(μf)=0\xi^{NF}_i (\mu_f) = 0. We emphasize that both μf\mu_f and ξiNF(mb)\xi^{NF}_i (m_b) are renormalization scheme dependent and we demonstrate analytically and numerically that for any chosen scale μf=\ord(mb)\mu_f=\ord(m_b) it is possible to find a renormalization scheme for which ξ1NF(μf)=ξ2NF(μf)=0\xi^{NF}_1 (\mu_f) = \xi^{NF}_2 (\mu_f)=0. The existing data indicate that such "factorization schemes" differ from the commonly used schemes NDR and HV. Similarly we point out that the recent extractions of the effective number of colours NeffN^{eff} from two-body non-leptonic B-decays while μ\mu and renormalization scheme independent suffer from gauge dependences and infrared dependences.

Keywords

Cite

@article{arxiv.hep-ph/9806278,
  title  = {Generalized Factorization in Non-leptonic Two-Body B-Decays: a Critical Look},
  author = {A. J. Buras and L. Silvestrini},
  journal= {arXiv preprint arXiv:hep-ph/9806278},
  year   = {2009}
}

Comments

20 pages, 2 figures