English

Theoretical study of the $B^+\to D^-D_s^{+}\pi^+$ reaction

High Energy Physics - Phenomenology 2024-01-09 v2 High Energy Physics - Experiment

Abstract

Prompted by the recent discoveries of Tcsˉ0(2900)++T_{c\bar{s}0}(2900)^{++} in the Ds+π+D_s^+\pi^+ invariant mass distribution of B+DDs+π+B^+\to D^-D_s^+\pi^+ process, we present a model that hopes to help us investigate the nature of Tcsˉ0(2900)++T_{c\bar{s}0}(2900)^{++} by reproducing the mass distribution of Dπ+,Ds+π+D^-\pi^+, D_s^+\pi^+ and DDs+D^-D_s^+ in B+DDs+π+B^+ \to D^-D_s^+\pi^+ decays. The structure of the triangular singularity peak generated from the χc1D+K+\chi_{c1}D^{*+}K^{*+} loop near the D+K+D^{*+}K^{*+} threshold is considered in our model may be the experimentally discovered resonance-like state structure Tcsˉ0(2900)++T_{c\bar{s}0}(2900)^{++}. In addition, we employ a coupled-channel approach to describe the dominant contribution of the DπD\pi S-waveS\text{-wave} amplitude, and also consider other excitations. Our model provides a well fit to the invariant mass distributions of Dπ+,Ds+π+D^-\pi^+, D_s^+\pi^+ and DDs+D^-D_s^+ simultaneously.

Keywords

Cite

@article{arxiv.2312.04953,
  title  = {Theoretical study of the $B^+\to D^-D_s^{+}\pi^+$ reaction},
  author = {Xuan Luo and Ruitian Li and Hao Sun},
  journal= {arXiv preprint arXiv:2312.04953},
  year   = {2024}
}

Comments

8 pages, 7 figures