activity
20012011
most citedMeson-exchange currents and quasielastic neutrino cross sections in the SuperScaling Approximation model

127 citations · 428 across the 19 of their papers we have counts for

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Showing 2006Show all

6 papers · 1 filter

nucl-th200655 cited

Final-state interactions and superscaling in the semi-relativistic approach to quasielastic electron and neutrino scattering

J. E. Amaro, M. B. Barbaro, J. A. Caballero +2

The semi-relativistic approach to electron and neutrino quasielastic scattering from nuclei is extended to include final-state interactions. Starting with the usual non-relativisti…

nucl-th200632 cited

Quasielastic Charged Current Neutrino-nucleus Scattering

J. E. Amaro, M. B. Barbaro, J. A. Caballero +1

We provide integrated cross sections for quasielastic charged-current neutrino-nucleus scattering. Results evaluated using the phenomenological scaling function extracted from the…

nucl-th2006

Superscaling in lepton-nucleus scattering

M. B. Barbaro, J. E. Amaro, J. A. Caballero +1

We suggest that superscaling analyses of few-GeV inclusive electron scattering from nuclei, both in the quasielastic peak and in the region where the -excitation dominates, allo…

nucl-th200648 cited

Superscaling analysis of inclusive electron scattering and its extension to charge-changing neutrino-nucleus cross sections beyond the relativistic Fermi gas approach

A. N. Antonov, M. V. Ivanov, M. K. Gaidarov +5

Superscaling analyses of inclusive electron scattering from nuclei are extended from the quasielastic processes to the delta excitation region. The calculations of c…

nucl-th2006

On the stability of Quantum Hadro-Dynamics

M. B. Barbaro, R. Cenni, M. R. Quaglia

We explore the possible occurrence of - condensation in the Quantum Hadro-Dynamics (QHD), namely the Serot and Walecka model, finding that at the mean field level it correspo…

nucl-th20068 cited

Superscaling in electron- and neutrino-nucleus scattering

Maria B. Barbaro

The superscaling properties of electron scattering data are used to extract model-independent predictions for neutrino-nucleus cross sections.