English

Ab initio informed evaluation of the radiative capture of protons on $^7$Be

Nuclear Theory 2024-07-23 v1 Nuclear Experiment

Abstract

The radiative capture of protons by 7^7Be, which is the source of 8^8B that β\beta-decays emitting the majority of solar neutrinos measured on earth, has not yet been measured at astrophysically relevant energies. The recommended value for its zero-energy S-factor, S17S_{17}(0) = 20.8±\pm(0.7)exp±\pm(1.4)theory eV\cdotb, relies on theoretical extrapolations from higher-energy measurements, a process that leads to significant uncertainty. We performed a set of first-principle (or, ab initio) calculations of the 7^7Be(pp, γ\gamma)8^8B reaction to provide an independent prediction of the low-energy S-factor with quantified uncertainties. We demonstrate underlying features in the predicted S-factor allowing the combination of theoretical calculations and measurements to produce an evaluated S-factor of S17S_{17}(0) = 19.8±\pm0.3 eV\cdotb. We expect the calculations and uncertainty quantification process described here to set a new standard for the evaluation of light-ion astrophysical reactions.

Keywords

Cite

@article{arxiv.2202.11759,
  title  = {Ab initio informed evaluation of the radiative capture of protons on $^7$Be},
  author = {Konstantinos Kravvaris and Petr Navrátil and Sofia Quaglioni and Chloë Hebborn and Guillaume Hupin},
  journal= {arXiv preprint arXiv:2202.11759},
  year   = {2024}
}

Comments

7 pages, 3 figures