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

Abstract

Observations of anomalies in the electron-positron angular correlations in high-energy decays in 4He, 8Be, and 12C 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 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 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 8Be, the p+7Li elastic scattering, the 7Li(p,γ)8Be cross section and the internal pair creation 7Li(p,e+ e-)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 7Li(p,X)8Be cross sections for several proposed models of the hypothetical X17 particle.

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