D. Coplowe
University of Oxford
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Publication
Featured researches published by D. Coplowe.
Physical Review C | 2016
X. Lu; L. Pickering; S. Dolan; G. Barr; D. Coplowe; Y. Uchida; D. Wark; M. O. Wascko; A. Weber; T. Yuan
We present a phenomenological study of nuclear effects in neutrino charged-current interactions, using transverse kinematic imbalances in exclusive measurements. Novel observables with minimal dependence on neutrino energy are proposed to study quasielastic scattering, and especially resonance production. They should be able to provide direct constraints on nuclear effects in neutrino- and antineutrino-nucleus interactions.
Physical Review D | 2015
X. Lu; D. Coplowe; R. Shah; G. Barr; D. Wark; A. Weber
We propose a new technique which enables an event-by-event selection of neutrino-hydrogen interactions in multi-nuclear targets and thereby allows application of hydrogen as targets in experiments with neutrino beams without involving cryogenics or high pressure hydrogen gas. This technique could significantly improve the reconstruction of the neutrino energy spectra. Since it allows a separation between hydrogen and the accompanying nuclei, this technique also enables us to measure nuclear effects in neutrino interactions directly.
Physical Review Letters | 2018
R. Gran; T. Cai; M. Sultana; Kevin Scott McFarland; X. Lu; S. A. Dytman; J.R. Leistico; L. Fields; J. Wolcott; R. D. Ransome; D. Jena; P. A. Rodrigues; H. S. Budd; M. Betancourt; F. Akbar; A. Olivier; A. Bodek; L. Aliaga; C. M. Marshall; S. Manly; H. R. Gallagher; Abhirup Ghosh; B. Yaeggy; C. Nguyen; A. Lovlein; H. Ray; H. Schellman; J. K. Nelson; J. Morfin; A. M. McGowan
We report on multinucleon effects in low momentum transfer (<0.8 GeV/c) antineutrino interactions on plastic (CH) scintillator. These data are from the 2010-2011 antineutrino phase of the MINERvA experiment at Fermilab. The hadronic energy spectrum of this inclusive sample is well described when a screening effect at a low energy transfer and a two-nucleon knockout process are added to a relativistic Fermi gas model of quasielastic, Δ resonance, and higher resonance processes. In this analysis, model elements introduced to describe previously published neutrino results have quantitatively similar benefits for this antineutrino sample. We present the results as a double-differential cross section to accelerate the investigation of alternate models for antineutrino scattering off nuclei.
arXiv: High Energy Physics - Experiment | 2018
X. Lu; M. Ascencio; T. Cai; K. S. McFarland; J. Sobczyk; S. A. Dytman; R. Galindo; L. Fields; O. Altinok; J. Wolcott; R. D. Ransome; D. Jena; P. A. Rodrigues; H. S. Budd; M. Betancourt; F. Akbar; D. Wark; A. Olivier; A. Bodek; L. Aliaga; C. M. Marshall; S. Manly; H. R. Gallagher; R. Gran; Abhirup Ghosh; B. Yaeggy; Nuruzzaman; C. Nguyen; A. M. McGowan; M. Sultana
arXiv: Data Analysis, Statistics and Probability | 2018
G. N. Perdue; M. Ascencio; T. Cai; K. S. McFarland; X. Lu; R. Galindo; L. Fields; J. Wolcott; R. D. Ransome; D. Jena; F. Akbar; M. Betancourt; G.F.R. Caceres Vera; C. M. Marshall; A. Olivier; R. Gran; Abhirup Ghosh; B. Yaeggy; Nuruzzaman; C. Nguyen; A. M. McGowan; R. Patton; H. Schellman; J. K. Nelson; M. Wospakrik; W. A. Mann; B. Messerly; H. Su; A. Norrick; J. Y. Han
Physical Review Letters | 2018
X. Lu; M. Betancourt; T. Walton; F. Akbar; L. Aliaga; O. Altinok; D.A. Andrade; M. Ascencio; L. Bellantoni; A. Bercellie; A. Bodek; A. Bravar; H. S. Budd; T. Cai; M. F. Carneiro; J. Chaves; D. Coplowe; H. da Motta; S. A. Dytman; G. A. Díaz; J. Felix; L. Fields; R. Fine; A. M. Gago; R. Galindo; H. R. Gallagher; Abhirup Ghosh; R. Gran; D. A. Harris; S. Henry
Physical Review Letters | 2016
K. Abe; C. Andreopoulos; M. Antonova; S. Aoki; A. Ariga; S. Assylbekov; D. Autiero; S. Ban; M. Barbi; G. J. Barker; G. Barr; P. Bartet-Friburg; M. Batkiewicz; F. Bay; Berardi; S. Berkman; S. Bhadra; A. Blondel; S. Bolognesi; S. Bordoni; S. Boyd; D. Brailsford; A. Bravar; C. Bronner; M. Buizza Avanzini; R. G. Calland; T. Campbell; S. V. Cao; J. Caravaca Rodríguez; S. Cartwright
arXiv: High Energy Physics - Experiment | 2015
X. Lu; D. Coplowe; R. Shah; G. Barr; D. Wark; A. Weber