Transverse Enhancement Model and MiniBooNE Charge Current Quasi-Elastic Neutrino Scattering Data
arXiv:1109.1081 · doi:10.1140/epjc/s10052-011-1850-8
Abstract
Recently proposed Transverse Enhancement Model of nuclear effects in Charge Current Quasi-Elastic neutrino scattering [A. Bodek, H. S. Budd, and M. E. Christy, Eur. Phys. J. C{\bf 71} (2011) 1726] is confronted with the MiniBooNE high statistics experimental data. It is shown that the {\it effective} large axial mass model leads to better agreement with the data.
4 pages, 6 figures
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- First Measurement of the Muon Neutrino Charged Current Quasielastic Double Differential Cross Section
- A study of quasi-elastic muon neutrino and antineutrino scattering in the NOMAD experiment
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- Meson-exchange currents and quasielastic neutrino cross sections in the SuperScaling Approximation model
- Relativistic analyses of quasielastic neutrino cross sections at MiniBooNE kinematics
- On extraction of value of axial mass from MiniBooNE neutrino quasi-elastic double differential cross section data
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Cited by in corpus (9)
- Many-Body Interactions of Neutrinos with Nuclei - Observables
- Multinucleon ejection model for Meson Exchange Current neutrino interactions
- Measurement of the Antineutrino Neutral-Current Elastic Differential Cross Section
- Determination of the axial nucleon form factor from the MiniBooNE data
- Cross Section Measurements with Monoenergetic Muon Neutrinos
- Neutral current quasielastic (anti)neutrino scattering beyond the Fermi gas model at MiniBooNE and BNL kinematics
- Running axial mass of the nucleon as a phenomenological tool for calculating QE neutrino-nucleus cross sections
- Charged Current Quasi-Elastic Cross Section Measurements in MiniBooNE
- Discrimination of parametrizations for nuclear effects in neutrino scattering through comparisons of low (~ 700 MeV) and medium (~ 3 GeV) energy cross-section data