English

Production of $D_{s0}(2590)^+$ in $B$ nonleptonic decays

High Energy Physics - Phenomenology 2024-04-15 v1 High Energy Physics - Experiment

Abstract

In 2021, a new charm-strange meson, Ds0(2590)+D_{s0}(2590)^+, has been discovered, it is believed to be the Ds+(21S0)D_s^+(2^1S_0). However, its low mass and wide width are challenged by theoretical results. Given the small branching ratio of the current production channel, resulting in a small number of events and large errors. We suggest to search for the Ds0(2590)+D_{s0}(2590)^+ in the BB meson nonleptonic decays, BqDq()Ds0(2590)+B_q\rightarrow D^{(*)}_qD_{s0}(2590)^+ (q=u,dq=u,d), followed by Ds0(2590)+DKD_{s0}(2590)^+\to D^*K. We find Br(BqDq()Ds0(2590)+)×Br(Ds0(2590)+DK)=(2.162.82)×103Br(B_q\rightarrow D^{(*)}_qD_{s0}(2590)^+)\times Br(D_{s0}(2590)^+\to D^{*}K)=(2.16\sim2.82)\times 10^{-3} is very large, and the result is not sensitive to the mass of Ds0(2590)+D_{s0}(2590)^+. Due to large branching ratio, large amount of Ds0(2590)+D_{s0}(2590)^+ events are expected. This study is based on the framework of instantaneous Bethe-Salpeter equation, and the used relativistic wave functions for mesons contain different partial waves. The contributions of different partial waves are also studied.

Keywords

Cite

@article{arxiv.2404.08167,
  title  = {Production of $D_{s0}(2590)^+$ in $B$ nonleptonic decays},
  author = {Shuang-Tao Wang and Su-Yan Pei and Tianhong Wang and Guo-Li Wang},
  journal= {arXiv preprint arXiv:2404.08167},
  year   = {2024}
}

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