English

Updated Analysis of Some Two-Body Charmless B Decays

High Energy Physics - Phenomenology 2014-11-17 v2

Abstract

New data from the BaBar, Belle, and CLEO Collaborations on B decays to two-body charmless final states are analyzed, with the following consequences: (1) The penguin amplitude which dominates the decay B+π+K0B^+ \to \pi^+ K^{*0} has a magnitude similar to that dominating B+π+K0B^+ \to \pi^+ K^0. (2) The decay B+π+ηB^+ \to \pi^+ \eta, a good candidate for observing direct CP violation, should be detectable at present levels of sensitivity. (3) The decays B+ηK+B^+ \to \eta' K^+ and B+ηK+B^+ \to \eta K^{*+} are sufficiently similar in rate to the corresponding decays B0ηK0B^0 \to \eta' K^0 and B0ηK0B^0 \to \eta K^{*0}, respectively, that one cannot yet infer the need for ``tree'' amplitudes tt' contributing to the B+B^+ but not the B0B^0 decays. Statistical requirements for observing this and other examples of tree-penguin interference are given. (4) Whereas the B+ηK+B^+ \to \eta' K^+ and B0ηK0B^0 \to \eta' K^0 rates cannot be accounted for by the penguin amplitude pp' alone but require an additional flavor-singlet penguin contribution ss', no such flavor-singlet penguin contribution is yet called for in the decays B+ηK+B^+ \to \eta K^{*+} or B0ηK0B^0 \to \eta K^{*0}. Predictions for the rates for B+ηK+B^+ \to \eta' K^{*+} and B0ηK0B^0 \to \eta' K^{*0} are given which would allow one to gauge the importance of these flavor-singlet penguin amplitudes.

Keywords

Cite

@article{arxiv.hep-ph/0112285,
  title  = {Updated Analysis of Some Two-Body Charmless B Decays},
  author = {Cheng-Wei Chiang and Jonathan L. Rosner},
  journal= {arXiv preprint arXiv:hep-ph/0112285},
  year   = {2014}
}

Comments

19 pages, RevTeX, 1 figure, to be submitted to Phys. Rev. D. Some small revisions made to original version