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Nuclear effects in neutrino and antineutrino charged-current quasielastic scattering at MINERνA kinematics
(American Physical Society, 2014-05-05)
We compare the charged-current quasielastic neutrino and antineutrino observables obtained in two different nuclear models, the phenomenological SuperScaling Approximation and the relativistic mean field approach, with the ...
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Final-state interactions and superscaling in the semi-relativistic approach to quasielastic electron and neutrino scattering
(The American Physical Society, 2007)
The semi-relativistic approach to electron and neutrino quasielastic scattering from nuclei is extended to include final-state interactions. Starting with the usual nonrelativistic continuum shell model, the problem is ...
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Scaling and isospin effects in quasielastic lepton-nucleus scattering in the relativistic mean field approach
(Elsevier, 2007)
The role of isospin in quasielastic electron scattering and charge-changing neutrino reactions is investigated in the relativistic impulse approximation. We analyze proton and neutron scaling functions making use of various ...
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Superscaling predictions for neutral current quasielastic neutrino-nucleus scattering
(American Physical Society, 2008-02-05)
The application of superscaling ideas to predict neutral-current (NC) quasielastic (QE) neutrino cross sections is investigated. The relativistic impulse approximation (RIA) using the same relativistic mean field potential ...
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Extensions of superscaling from relativistic mean field theory: The SuSAv2 model
(American Physical Society, 2014)
We present a systematic analysis of the quasielastic scaling functions computed within the relativistic mean field (RMF) theory and we propose an extension of the superscaling approach (SuSA) model based on these results. ...