English

Charged-current scattering off $^{16}$O nucleus as a detection channel for supernova neutrinos

High Energy Astrophysical Phenomena 2019-04-30 v2 High Energy Physics - Phenomenology Nuclear Theory

Abstract

Event spectra of the neutrino-16^{16}O charged-current reactions in Super-Kamiokande are evaluated for a future supernova neutrino burst. Since these channels are expected to be useful for diagnosing a neutrino spectrum with high average energy, the evaluations are performed not only for an ordinary supernova neutrino model but also for a model of neutrino emission from a black-hole-forming collapse. Using shell model results, whose excitation energies are consistent with the experimental data, the cross sections of the 16^{16}O(νe,e\nu_e, e^-)X and 16^{16}O(νˉe,e+\bar\nu_e, e^+)X reactions for each nuclear state with a different excitation energy are employed in this study. It is found that, owing to the components of the reaction with higher excitation energy, the event spectrum becomes 4-7 MeV softer than that in the case without considering the excitation energies. In addition, a simplified approach to evaluate the event spectra is proposed for convenience and its validity is examined.

Keywords

Cite

@article{arxiv.1809.08398,
  title  = {Charged-current scattering off $^{16}$O nucleus as a detection channel for supernova neutrinos},
  author = {Ken'ichiro Nakazato and Toshio Suzuki and Makoto Sakuda},
  journal= {arXiv preprint arXiv:1809.08398},
  year   = {2019}
}

Comments

15 pages, 6 figures, typos corrected, published in PTEP