English

Ab initio investigation of the $^7$Li($p,e^+e^-$)$^8$Be process and the X17 boson

Nuclear Theory 2024-07-15 v3 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

Observations of anomalies in the electron-positron angular correlations in high-energy decays in 4^4He, 8^8Be, and 12^{12}C have been reported recently by the ATOMKI collaboration. These could be explained by the creation and subsequent decay of a new boson with a mass of 17{\sim}17 MeV. Theoretical understanding of pair creation in the proton capture reactions used in these experiments is important for the interpretation of the anomalies. We apply the ab initio No-Core Shell Model with Continuum (NCSMC) to the proton capture on 7^7Li. The NCSMC describes both bound and unbound states in light nuclei in a unified way with chiral two- and three-nucleon interactions as the only input. We investigate the structure of 8^8Be, the p+7p+^7Li elastic scattering, the 7^7Li(p,γp,\gamma)8^8Be cross section and the internal pair creation 7^7Li(p,e+ep,e^+ e^-)8^8Be. We discuss the impact of a proper treatment of the initial scattering state on the electron-positron angular correlation spectrum and compare our results to available ATOMKI data sets. Finally, we calculate 7^7Li(p,Xp,X)8^8Be cross sections for several proposed models of the hypothetical X17 particle.

Keywords

Cite

@article{arxiv.2308.13751,
  title  = {Ab initio investigation of the $^7$Li($p,e^+e^-$)$^8$Be process and the X17 boson},
  author = {P. Gysbers and P. Navratil and K. Kravvaris and G. Hupin and S. Quaglioni},
  journal= {arXiv preprint arXiv:2308.13751},
  year   = {2024}
}

Comments

32 pages, 13 figures. Matches more closely the published version