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Simultaneous Measurement of Muon Neutrino νμ Charged-Current Single π+ Production in CH, C, H2 O, Fe, and Pb Targets in MINERvA

  • (The MINERvA Collaboration)
  • University of Rochester
  • University of Pennsylvania School of Arts and Sciences
  • Department of Physics Aligarh Muslim University
  • College of William and Mary
  • Pontifical Catholic Univ. of Peru
  • Fermi National Accelerator Laboratory
  • Universidad de Guanajuato
  • University of Geneva
  • Centro Brasileiro de Pesquisas Físicas
  • University of Pittsburgh
  • University of Notre Dame
  • Tufts University
  • Universidad Técnica Federico Santa Maria
  • Oregon State University
  • University of Minnesota Duluth
  • York University Toronto
  • Indian Institute of Science Education and Research Mohali
  • Imperial College of Science Technology and Medicine
  • Rutgers - The State University of New Jersey, New Brunswick
  • University of Warwick
  • University of Oxford
  • Massachusetts College of Liberal Arts
  • University of Florida
  • Universidad Nacional de Ingenieriá

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

9 Citas (Scopus)

Resumen

Neutrino-induced charged-current single π+ production in the Δ(1232) resonance region is of considerable interest to accelerator-based neutrino oscillation experiments. In this Letter, high statistic differential cross sections are reported for the semiexclusive reaction νμA→μ-π++ nucleon(s) on scintillator, carbon, water, iron, and lead targets recorded by MINERvA using a wideband νμ beam with Eν ≈6 GeV. Suppression of the cross section at low Q2 and enhancement of low Tπ are observed in both light and heavy nuclear targets compared with phenomenological models used in current neutrino interaction generators. The cross sections per nucleon for iron and lead compared with CH across the kinematic variables probed are 0.8 and 0.5 respectively, a scaling which is also not predicted by current generators.

Idioma originalInglés
Número de artículo011801
PublicaciónPhysical Review Letters
Volumen131
N.º1
DOI
EstadoPublicada - 7 jul. 2023

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