Extraction of Neutrino Flux with the Low Method at MiniBooNE Energies
Abstract
We describe the application of the `low-' method to the extraction of the neutrino flux at MiniBooNE energies. As an example, we extract the relative energy dependence of the flux from published MiniBooNE quasielastic scattering cross sections with < 0.2 GeV and < 0.1 GeV (here is the energy transfer to the target). We find that the flux extracted from the `low-' cross sections is consistent with the nominal flux used by MiniBooNE. We fit the MiniBooNE cross sections over the entire kinematic range to various parametrizations of the axial form factor. We find that if the overall normalization of the fit is allowed to float within the normalization errors, the extracted values of the axial vector mass are independent of the flux. Within the Fermi gas model, the Q2 distribution of the MiniBooNE data is described by a standard dipole form factor with MA=1.410.04 GeV. If nuclear transverse enhancement in the vector form factors is accounted for, the data are best fit with a modified dipole form factor with MA=1.10 0.03 GeV.
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