arXiv:hep-ph/0403275·v2·High Energy Physics — Phenomenology
An Analysis of the Time-Dependent CP Asymmetry in Decays in the Standard Model
A. Ali (DESY)🇩🇪 · E. Lunghi (Univ. Zurich)🇨🇭 · A.Ya. Parkhomenko (Univ. Bern)🇨🇭
Abstract
Measurements of the time-dependent CP asymmetry in the decay and its charge conjugate by the BELLE and BABAR collaborations currently yield and , characterizing the direct and mixing-induced CP asymmetries, respectively. We study the implication of these measurements on the CKM phenomenology taking into account the available information in the quark mixing sector. Our analysis leads to the results that the ratio involving the QCD-penguin and tree amplitudes and the related strong phase difference in the decays are quite substantial. Using the isospin symmetry to constrain and , where parameterizes the penguin-induced contribution, we present a fit of the current data including the measurements of and . Our best-fits yield: , , , , and . At 68% C.L., the ranges are: , , , and . Currently {\it en vogue} dynamical approaches to estimate the hadronic matrix elements in decays do not provide a good fit of the current data.
Comments: 25 pages, 15 figures, uses pr-imfp03-new style file (enclosed). Submitted to the European Physical Journal C. An erroneous isospin-based bound removed and the analysis corrected; references and several clarifying remarks added