English

Toy model to understand oscillatory behavior in timelike nucleon form factors

Nuclear Theory 2023-05-09 v2 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment

Abstract

To understand the oscillatory behavior exhibited in the timelike electromagnetic form factors of nucleons, we propose a toy model based on the Jost function of the NNˉN\bar N pair into the timelike form factors with the help of the distorted-wave Born approximation. By constructing a simple square-well potential reflecting the final-state interaction of NNˉN\bar N, we naturally represent the damped oscillatory phenomenon in the timelike electromagnetic form factors of nucleons. Especially, our study reveals that the ``period" of the oscillation is approximately determined by the Yukawa interaction range 1/mπ1/m_\pi. Other possible potentials are also discussed. The threshold enhancements of the cross sections for e+ennˉe^+e^-\to n\bar n, ΛΛˉ\Lambda\bar\Lambda, and ΛcΛˉc\Lambda_c\bar\Lambda_c can also be understand within this scenario.

Keywords

Cite

@article{arxiv.2211.11555,
  title  = {Toy model to understand oscillatory behavior in timelike nucleon form factors},
  author = {Ri-Qing Qian and Zhan-Wei Liu and Xu Cao and Xiang Liu},
  journal= {arXiv preprint arXiv:2211.11555},
  year   = {2023}
}

Comments

7 pages, 3 figures. We provide supplemental materials to show that the new data from the BESIII collaboration (arXiv:2303.07629) are consistent with our earlier description