English

Charmless Three-body Decays of B Mesons

High Energy Physics - Phenomenology 2008-11-26 v2 High Energy Physics - Experiment

Abstract

Charmless 3-body decays of B mesons are studied in the framework of the factorization approach. The nonresonant contributions arising from BP1P2B\to P_1P_2 transitions are evaluated using heavy meson chiral perturbation theory (HMChPT). The momentum dependence of nonresonant amplitudes is assumed to be in the exponential form e^{-\alpha_{NR}} p_B\cdot(p_i+p_j)} so that the HMChPT results are recovered in the soft meson limit pi,pj0p_i, p_j\to 0. In addition, we have identified another large source of the nonresonant signal in the matrix elements of scalar densities, e.g. <KKˉsˉs0><K\bar K|\bar ss|0>, which can be constrained from the decay Bˉ0KSKSKS\bar B^0\to K_SK_SK_S or BKKSKSB^-\to K^-K_SK_S. The intermediate vector meson contributions to 3-body decays are identified through the vector current, while the scalar meson resonances are mainly associated with the scalar density. Their effects are described in terms of the Breit-Wigner formalism. Our main results are: (i) All KKK modes are dominated by the nonresonant background. The predicted branching ratios of K+KKS(L)K^+K^-K_{S(L)}, K+KKK^+K^-K^- and KKSKSK^-K_SK_S modes are consistent with the data within errors. (ii) Although the penguin-dominated B0K+KKSB^0\to K^+K^-K_{S} decay is subject to a potentially significant tree pollution, its effective sin2β\sin 2\beta is very similar to that of the KSKSKSK_SK_SK_S mode. However, direct CP asymmetry of the former, being of order -4%, is more prominent than the latter. (iii) For BKππB\to K\pi\pi decays, we found sizable nonresonant contributions in Kπ+πK^-\pi^+\pi^- and Kˉ0π+π\bar K^0\pi^+\pi^- modes, in agreement with the Belle measurements but larger than the BaBar result.

Keywords

Cite

@article{arxiv.0704.1049,
  title  = {Charmless Three-body Decays of B Mesons},
  author = {Hai-Yang Cheng and Chun-Khiang Chua and Amarjit Soni},
  journal= {arXiv preprint arXiv:0704.1049},
  year   = {2008}
}

Comments

39 pages, 2 figures, version to appear in PRD