English

Study of $B \to K_0^*(1430)K^{(*)}$ decays in QCD Factorization Approach

High Energy Physics - Phenomenology 2015-06-23 v1 High Energy Physics - Experiment

Abstract

Within the QCD factorization approach, we calculate the branching fractions and CPCP asymmetry parameters of 12 BK0(1430)K()B \to K_0^*(1430)K^{(*)} decay modes under the assumption that the scalar meson K0(1430)K_0^*(1430) is the first excited state or the lowest lying ground state in the quark model. We find that the decay modes with the scalar meson emitted, have large branching fractions due to the enhancement of large chiral factor rχK0r_\chi^{K_0^*}. The branching fractions of decays with the vector meson emitted, become much smaller owing to the smaller factor rχKr_\chi^{K^*}. Moreover, the annihilation type diagram will induce large uncertainties because of the extra free parameter dealing with the endpoint singularity. For the pure annihilation type decays, our predictions are smaller than that from PQCD approach by 2-3 orders of magnitudes. These results will be tested by the ongoing LHCb experiment, forthcoming Belle-II experiment and the proposing circular electron-positron collider.

Keywords

Cite

@article{arxiv.1501.03865,
  title  = {Study of $B \to K_0^*(1430)K^{(*)}$ decays in QCD Factorization Approach},
  author = {Ying Li and Hong-Yan Zhang and Ye Xing and Zuo-Hong Li and Cai-Dian Lu},
  journal= {arXiv preprint arXiv:1501.03865},
  year   = {2015}
}

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9 pages