Relativistic analyses of quasielastic neutrino cross sections at MiniBooNE kinematics

Apr, 2011
17 pages
Published in:
  • Phys.Rev.D 84 (2011) 033004
e-Print:

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Abstract: (arXiv)
Two relativistic approaches are considered to evaluate the quasielastic double-differential and integrated neutrino-nucleus cross sections. One, based on the relativistic impulse approximation, relies on the microscopic description of nuclear dynamics using relativistic mean field theory, and incorporates a description of the final-state interactions. The second is based on the superscaling behavior exhibited by electron scattering data and its applicability, due to the universal character of the scaling function, to the analysis of neutrino scattering reactions. The role played by the vector meson-exchange currents in the two-particle two-hole sector is also incorporated and the results obtained are compared with the recent data for neutrinos measured by the MiniBooNE Collaboration.
  • 13.15.+g
  • 24.10.Jv
  • 25.30.Pt
  • mean field approximation: relativistic
  • impulse approximation: relativistic
  • BooNE
  • final-state interaction
  • neutrino nucleus: inelastic scattering
  • scaling
  • charged current
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