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Measurement of Final-State Correlations in Neutrino Muon-Proton Mesonless Production on Hydrocarbon at Eν ©=3 GeV

  • (MINERvA Collaboration)
  • University of Oxford
  • Fermi National Accelerator Laboratory
  • Aligarh Muslim University
  • College of William and Mary
  • Pontificia Universidad Católica del Perú
  • Tufts University
  • Universidad de Guanajuato
  • University of Rochester
  • University of Geneva
  • Oregon State University
  • University of Pennsylvania School of Arts and Sciences
  • Centro Brasileiro de Pesquisas Físicas
  • University of Pittsburgh
  • Northwestern University
  • Universidad Técnica Federico Santa Maria
  • University of Minnesota Duluth
  • Indian Institute of Science Education and Research Mohali
  • Rutgers - The State University of New Jersey, New Brunswick
  • Massachusetts College of Liberal Arts
  • Lawrence Berkeley National Laboratory
  • University of Florida
  • University of Michigan, Ann Arbor
  • University College London
  • University of Mississippi
  • University of Wrocław
  • Universidad Nacional de Ingeniería, Peru

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

83 Citas (Scopus)

Resumen

Final-state kinematic imbalances are measured in mesonless production of νμ+A→μ-+p+X in the MINERvA tracker. Initial- and final-state nuclear effects are probed using the direction of the μ - p transverse momentum imbalance and the initial-state momentum of the struck neutron. Differential cross sections are compared to predictions based on current approaches to medium modeling. These models underpredict the cross section at intermediate intranuclear momentum transfers that generally exceed the Fermi momenta. As neutrino interaction models need to correctly incorporate the effect of the nucleus in order to predict neutrino energy resolution in oscillation experiments, this result points to a region of phase space where additional cross section strength is needed in current models, and demonstrates a new technique that would be suitable for use in fine-grained liquid argon detectors where the effect of the nucleus may be even larger.

Idioma originalInglés
Número de artículo022504
PublicaciónPhysical Review Letters
Volumen121
N.º2
DOI
EstadoPublicada - 11 jul. 2018

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