English

Heavy Quark Distribution Function in QCD and the AC$^2$M$^2$ Model

High Energy Physics - Phenomenology 2009-10-28 v2

Abstract

We show that the phenomenological \ACM ansatz is consistent with QCD through order 1/mb1/m_b in the description of B\ralνˉl+XuB\ra l\bar \nu_l+X_u and B\raγ+XsB\ra \gamma +X_s transitions, including their energy spectra and differential distributions. This suggests a concrete realization for the QCD distribution function, which we call the ``Roman'' function. On the other hand the \ACM model description of the end-point domain in B\ralνˉl+XcB\ra l\bar \nu_l + X_c is incompatible with QCD: a different distribution function enters the description of b\racb\ra c decays as compared to the transitions to the massless quarks. Both observations -- the validity of the {\ACM}-like description for heavy-to-light transitions and the emergence of the new distribution function in the b\racb\ra c case -- are in contradiction to a recent claim in the literature. The intrinsic limitation of the \ACM model could reveal itself in different values of the effective bb quark mass from fits of the Λb\Lambda _b and BB decays.

Keywords

Cite

@article{arxiv.hep-ph/9402225,
  title  = {Heavy Quark Distribution Function in QCD and the AC$^2$M$^2$ Model},
  author = {I. Bigi and M. Shifman and N. Uraltsev and A. Vainshtein},
  journal= {arXiv preprint arXiv:hep-ph/9402225},
  year   = {2009}
}

Comments

15 pages, Latex, 2 figures are included (as 2 appended postscript files), CERN-TH.7159/94, TPI-MINN-94/2-T, UND-HEP-94-BIG02 (a few comments on the literature are added)

R2 v1 2026-07-22T14:19:52.922Z