Implications of Family Nonuniversal $Z^\prime$ Model on B -->K_0^* pi Decays
Abstract
Within the QCD factorization formalism, we study the possible impacts of the nonuniversal model, which provides a flavor-changing neutral current at the tree level, on rare decays . Under two different scenarios (S1 and S2) for identifying the scalar meson , the branching ratios, CP asymmetries, and isospin asymmetries are calculated in both the standard model (SM) and the family nonuniversal model. We find that the branching ratios and CP asymmetries are sensitive to weak annihilation. In the SM, with and , the branching ratios of S1 (S2) are smaller (larger) than the experimental data. Adding the contribution of the boson in two different cases (Case-I and Case-II), for S1, the branching ratios are still far away from experiment. For S2, in Case-II, the branching ratios become smaller and can accommodate the data; in Case-I, although the center values are enhanced, they can also explain the data with large uncertainties. Similar conclusions are also reached for CP asymmetries. Our results indicate that S2 is more favored than S1, even after considering new physics effects. Moreover, if there exists a nonuniversal boson, Case-II is preferred. All results can be tested in the LHC-b experiment and forthcoming super-B factory.
Keywords
Cite
@article{arxiv.1111.7153,
title = {Implications of Family Nonuniversal $Z^\prime$ Model on B -->K_0^* pi Decays},
author = {Ying Li and Xiao-Jiao Fan and Juan Hua and En-Lei Wang},
journal= {arXiv preprint arXiv:1111.7153},
year = {2013}
}
Comments
14 pages, 4 figures and 3 tables