arXiv · 2608.20835
The role of triangle singularity in the $B^0 \to D^- π^+ a_0(980)(π^0 η)$ decay
Abstract
The triangle singularity interpretation of the \replyhe{$a_1(1420)$} observed by the COMPASS Collaboration has been widely accepted. In this work, we investigate the triangle mechanism in the decay $B^0 \to D^- π^+ a_0(980)(π^0 η)$, where the $a_0(980)$ is treated as a dynamically generated state. The $\bar{K}^{*0}$-$K^+$-$K^-$ triangle loop originates from the decay $B^0 \to D^- K^+ \bar{K}^{*0}$, which has been observed by the Belle Collaboration, followed by the subsequent decay $\bar{K}^{*0} \to K^- π^+$. The triangle amplitude develops a pronounced peak around 1420 MeV, which is reflected in the invariant mass spectrum of the $πa_0(980)$ system. The differential decay width is calculated and exhibits a narrow peak around $980~\mathrm{MeV}$ in the $π^0 η$ invariant mass distribution. Furthermore, the invariant mass distribution of the $π^+ π^0 η$ system shows a clear peak around $1420~\mathrm{MeV}$, which further \replyhe{confirms} the triangle singularity explanation of the \replyhe{$a_1(1420)$}. We expect that the proposed $B^0$ decay mode could provide a potential platform for further exploring the triangle-singularity nature of the \replyhe{$a_1(1420)$} and could be tested in future experiments such as LHCb, BESIII, and Belle~II.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Wei Wang, Dazhuang He, Xuan Luo. 2026-08-21. The role of triangle singularity in the $B^0 \to D^- π^+ a_0(980)(π^0 η)$ decay. https://arxiv.org/abs/2608.20835
Cite the original work for its findings. Save a collection to share your selection of sources.