Approximate treatment of lepton distortion in charged-current neutrino scattering from nuclei
- 1 April 1998
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review C
- Vol. 57 (4) , 2004-2009
- https://doi.org/10.1103/physrevc.57.2004
Abstract
The partial-wave expansion used to treat the distortion of scattered electrons by the nuclear Coulomb field is simpler and considerably less time-consuming when applied to the production of muons and electrons by low- and intermediate-energy neutrinos. For angle-integrated cross sections, however, a modification of the “effective-momentum” approximation seems to work so well that for muons the full distorted-wave treatment is usually unnecessary, even at kinetic energies as low as 1 MeV and in nuclei as heavy as lead. The method does not work as well for electron production at low energies, but there a Fermi function often proves perfectly adequate. Scattering of electron neutrinos from muon decay on iodine and of atmospheric neutrinos on iron is discussed in light of these results.Keywords
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