English

Detecting the pure triangle sigularity effect through the $\psi(2S) \to p \bar{p} \eta / p \bar{p} \pi^0$ process

High Energy Physics - Phenomenology 2021-05-21 v3

Abstract

In this work, the triangle singularity mechanism is investigated in the ψ(2S)ppˉη/ppˉπ0\psi(2S) \to p \bar{p} \eta / p \bar{p} \pi^0 process. The triangle loop composed by J/ψJ/\psi, η\eta and pp has a singularity in the physical kinematic range for the ψ(2S)ppˉη/ppˉπ0\psi(2S) \to p \bar{p} \eta / p \bar{p} \pi^0 process, and it would generate a very narrow peak in the invariant mass spectrum of pη(π)p\eta (\pi) around 1.563871.56387 GeV, which is far away from both the threshold and relative resonances. In these processes, all the involved vertices are constrained by the experimental data. Thus, we can make a precise model independent prediction here. It turns out that the peak in the pηp\eta invariant mass spectrum is visible, while it is very small in the pπ0p\pi^0 invariant mass spectrum. We expect this effect shown in ppˉηp \bar{p} \eta final state can be observed by the Beijing Spectrometer (BESIII) and Super Tau-Charm Facility (STCF) in the future.

Keywords

Cite

@article{arxiv.2011.14590,
  title  = {Detecting the pure triangle sigularity effect through the $\psi(2S) \to p \bar{p} \eta / p \bar{p} \pi^0$ process},
  author = {Qi Huang and Chao-Wei Shen and Jia-Jun Wu},
  journal= {arXiv preprint arXiv:2011.14590},
  year   = {2021}
}