English

Theory of elastic neutrino-electron scattering

High Energy Physics - Phenomenology 2020-02-26 v2 High Energy Physics - Experiment Nuclear Experiment Nuclear Theory

Abstract

Theoretical predictions for elastic neutrino-electron scattering have no hadronic or nuclear uncertainties at leading order making this process an important tool for normalizing neutrino flux. However, the process is subject to large radiative corrections that differ according to experimental conditions. In this paper, we collect new and existing results for total and differential cross sections accompanied by radiation of one photon, νeνe(γ)\nu e \to \nu e (\gamma). We perform calculations within the Fermi effective theory and provide analytic expressions for the electron energy spectrum and for the total electromagnetic energy spectrum as well as for double- and triple-differential cross sections with respect to electron energy, electron angle, photon energy, and photon angle. We discuss illustrative applications to accelerator-based neutrino experiments and provide the most precise up-to-date values of neutrino-electron scattering cross sections. We present an analysis of theoretical error, which is dominated by the 0.20.4%\sim 0.2 - 0.4\% uncertainty of the hadronic correction. We also discuss how searches for new physics can be affected by radiative corrections.

Keywords

Cite

@article{arxiv.1907.03379,
  title  = {Theory of elastic neutrino-electron scattering},
  author = {Oleksandr Tomalak and Richard J Hill},
  journal= {arXiv preprint arXiv:1907.03379},
  year   = {2020}
}

Comments

54 pages, 20 figures. v2: journal version; minor corrections, Section 5.4 added, references and supplementary file added, appendix K extended