English

$B_{(s)}\to D^*_{s0}(2317)P(V)$ decays in perturbative QCD approach

High Energy Physics - Phenomenology 2019-05-01 v1

Abstract

In this work, we use pQCD approach to calculate 20 B(s)Ds0(2317)P(V)B_{(s)}\to D^*_{s0}(2317)P(V) two body decays by assuming Ds0(2317)D^*_{s0}(2317) as a cˉs\bar cs scalar meson, where P(V)P(V) denotes a pseudoscalar (vector) meson. These B(s)B_{(s)} decays can serve as an ideal platform to probe the valuable information on the inner structure of the charmed-strange meson Ds0(2317)D^*_{s0}(2317), and to explore the dynamics of strong interactions and signals of new physics. These considered decays can be divided into two types: the CKM favored decays and the CKM suppressed decays. The former are induced by bcb\to c transition, whose branching ratios are larger than 10510^{-5}. The branching fraction of the decay Bˉs0Ds0+(2317)ρ\bar B^0_s\to D^{*+}_{s0}(2317)\rho^{-} is the largest and reaches about 1.8×1031.8\times 10^{-3}, while the branching ratios for the decay Bˉs0Ds0+(2317)K\bar B^0_s\to D^{*+}_{s0}(2317)K^{*-} and other two pure annihilation decays Bˉ0Ds0+(2317)K,Ds0+(2317)K\bar B^0\to D^{*+}_{s0}(2317)K^-, D^{*+}_{s0}(2317)K^{*-} are only at 10510^{-5} order. Our predictions are consistent well with the results given by the light cone sum rules approach. These decays are most likely to be measured at the running LHCb and the forthcoming SuperKEKB. The latter are induced by bub\to u transition, among of which the channel Bˉ0D(2317)ρ+\bar B^0\to D^{*-}(2317)\rho^+ has the largest branching fraction, reaching up to 10510^{-5} order. Again the pure annihilation decays BDs0(2317)ϕ,Bˉ0Ds0(2317)K+(K+),BDs0(2317)K0(K0)B^-\to D^{*-}_{s0}(2317)\phi, \bar B^0\to D^{*-}_{s0}(2317)K^+(K^{*+}), B^-\to D^{*-}_{s0}(2317)K^0(K^{*0}), have the smallest branching ratios, which drop to as low as 101010810^{-10}\sim10^{-8}.

Keywords

Cite

@article{arxiv.1903.03990,
  title  = {$B_{(s)}\to D^*_{s0}(2317)P(V)$ decays in perturbative QCD approach},
  author = {Zhi-Qing Zhang and Hongxia Guo and Na Wang and Hai-Tao Jia},
  journal= {arXiv preprint arXiv:1903.03990},
  year   = {2019}
}

Comments

15 pages, 1 figure,