Testing neutrino magnetic moment in ionization of atoms by neutrino impact
arXiv:1105.5543 · doi:10.1134/S0021364011110075
Abstract
The atomic ionization processes induced by scattering of neutrinos play key roles in the experimental searches for a neutrino magnetic moment. Current experiments with reactor (anti)neutrinos employ germanium detectors having energy threshold comparable to typical binding energies of atomic electrons, which fact must be taken into account in the interpretation of the data. Our theoretical analysis shows that the so-called stepping approximation to the neutrino-impact ionization is well applicable for the lowest bound Coulomb states, and it becomes exact in the semiclassical limit. Numerical evidence is presented using the Thomas-Fermi model for the germanium atom.
5 pages, 1 figure
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Cited by in corpus (6)
- Electromagnetic neutrinos in laboratory experiments and astrophysics
- Theory of neutrino-atom collisions: the history, present status and BSM physics
- Neutrino Backgrounds in Future Liquid Noble Element Dark Matter Direct Detection Experiments
- On sensitivity of neutrino-helium ionizing collisions to neutrino magnetic moments
- Neutrino electromagnetic properties and new bounds on neutrino magnetic moments
- Neutrino-atom collisions