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9–11 May 2016
University of Pittsburgh
US/Eastern timezone

Model-independent determination of the axial mass parameter in quasielastic antineutrino-nucleon scattering

9 May 2016, 17:00
15m
G26 (Benedum Hall)

G26

Benedum Hall

parallel talk Neutrinos

Speaker

Gil Paz (Wayne State University)

Description

Understanding the charged current quasielestic (CCQE) neutrino-nucleus interaction is important for precision studies of neutrino oscillations. The theoretical description of the interaction depends on the combination of a nuclear model with the knowledge of form factors. While the former has received considerable attention, the latter, in particular the axial form factor, is implemented using the historical dipole model. Instead, we use a model-independent approach, presented in a previous study, to analyze the muon antineutrino CCQE mineral oil data published by the MiniBooNE collaboration. We combine the cross section for scattering of antineutrinos off protons in carbon and hydrogen, using the same axial form factor for both. The extracted value of the axial mass parameter mA=0.840.04+0.12±0.11GeV is in very good agreement with the model-independent value extracted from MiniBooNE's neutrino data. Going beyond a one-parameter description of the axial form factor, we extract values of the axial form factor in the range of Q2=0.1...1.0 GeV2, finding a very good agreement with the analogous extraction from the neutrino data. We discuss the implications of these results.

Author

Gil Paz (Wayne State University)

Co-authors

Mr Anthony J. Tropiano (Michigan State University) Bhubanjyoti Bhattacharya (University of Montreal)

Presentation materials