Superscaling and Charge-Changing Neutrino Scattering from Nuclei in the -Region beyond the Relativistic Fermi Gas Model
arXiv:0802.4378 · doi:10.1103/PhysRevC.77.034612
Abstract
The superscaling analysis using the scaling function obtained within the coherent density fluctuation model is extended to calculate charge-changing neutrino and antineutrino scattering on C at energies from 1 to 2 GeV not only in the quasielastic but also in the delta excitation region. The results are compared with those obtained using the scaling functions from the relativistic Fermi gas model and from the superscaling analysis of inclusive scattering of electrons from nuclei.
9 pages, 8 figures, accepted for publication in Physical Review C
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Cited by in corpus (13)
- Meson-exchange currents and quasielastic neutrino cross sections in the SuperScaling Approximation model
- Relativistic descriptions of inclusive quasielastic electron scattering: application to scaling and superscaling ideas
- Scaling Function, Spectral Function and Nucleon Momentum Distribution in Nuclei
- Coherent Neutrinoproduction of Photons and Pions in a Chiral Effective Field Theory for Nuclei
- A realistic spectral function model for charged-current quasielastic-like neutrino and antineutrino cross sections on C
- Incoherent Neutrinoproduction of Photons and Pions in a Chiral Effective Field Theory for Nuclei
- Superscaling predictions for neutrino-induced charged-current charged pion production at MiniBooNE
- Isospin dependent properties of the isotopic chain of Scandium and Titanium nuclei within the relativistic mean-field formalism
- Longitudinal and Transverse Scaling Functions within the Coherent Density Fluctuation Model
- Isoscalar Giant Monopole Resonance in Spherical Nuclei as a Nuclear Matter Incompressibility Indicator
- Superscaling analysis of inclusive electron and (anti)neutrino scattering within the coherent density fluctuation model
- Superscaling of non-quasielastic electron-nucleus scattering
- Charged-current quasielastic-like neutrino scattering from C in the coherent density fluctuation model with two-nucleon emission