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Featured researches published by D. Naples.


Physical Review Letters | 2002

A Precise determination of electroweak parameters in neutrino nucleon scattering

G. P. Zeller; Kevin Scott McFarland; T. Adams; A. Alton; S. Avvakumov; L. de Barbaro; P. de Barbaro; R. H. Bernstein; A. Bodek; T. A. Bolton; J. Brau; D. Buchholz; H. S. Budd; L. Bugel; J. M. Conrad; R. B. Drucker; B.T. Fleming; R. Frey; J. Formaggio; J. Goldman; M. Goncharov; D. A. Harris; R. A. Johnson; J.H. Kim; S. Koutsoliotas; M.J. Lamm; W. Marsh; D. Mason; John McDonald; C. McNulty

The NuTeV Collaboration has extracted the electroweak parameter sin(2)theta(W) from the measurement of the ratios of neutral current to charged current nu and (-)nu cross sections. Our value, sin(2)theta((on-shell))(W) = 0.2277 +/- 0.0013(stat) +/- 0.0009(syst), is 3 standard deviations above the standard model prediction. We also present a model independent analysis of the same data in terms of neutral-current quark couplings.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2010

The GENIE Neutrino Monte Carlo Generator

C. Andreopoulos; A. Bell; D. Bhattacharya; F. Cavanna; J. Dobson; S. A. Dytman; H. R. Gallagher; P. Guzowski; R. Hatcher; P. Kehayias; A. Meregaglia; D. Naples; G. F. Pearce; A. Rubbia; M. Whalley; T. Yang

The exploration of the neutrino mixing matrix forms one of the major directions in science. A number of scientific opportunities lie ahead: Over the next decade searches for


Physical Review Letters | 1997

IMPROVED DETERMINATION OF ALPHA S FROM NEUTRINO-NUCLEON SCATTERING

W.G. Seligman; C. G. Arroyo; L. de Barbaro; P. de Barbaro; A.O. Bazarko; R. H. Bernstein; A. Bodek; T. A. Bolton; H. S. Budd; J. M. Conrad; D. A. Harris; R. A. Johnson; Jaegwon Kim; B.J. King; T. Kinnel; M.J. Lamm; W.C. Lefmann; W. Marsh; K. S. McFarland; C. McNulty; S.R. Mishra; D. Naples; P. Z. Quintas; A. Romosan; W. K. Sakumoto; H. Schellman; F. Sciulli; M. H. Shaevitz; W. H. Smith; P. Spentzouris

{\nu}_{\mu} \rightarrow {\nu}_{e}


Physical Review D | 2001

Precise measurement of dimuon production cross-sections in muon neutrino Fe and muon anti-neutrino Fe deep inelastic scattering at the Tevatron

M. Goncharov; N. Suwonjandee; M. H. Shaevitz; A. Romosan; J. Goldman; W. Marsh; D. Mason; J. Brau; P. Nienaber; A. Vaitaitis; M. Tzanov; U. K. Yang; E. D. Zimmerman; Arie Bodek; T. Adams; G. P. Zeller; S. Koutsoliotas; M. Vakili; W. K. Sakumoto; E. G. Stern; Howard S. Budd; R. A. Johnson; T. A. Bolton; H. Schellman; Bonnie Tamminga Fleming; R. Frey; J. Formaggio; M.J. Lamm; R. H. Bernstein; A. Alton

oscillations will dramatically improve our sensitivity to


Physical Review D | 2006

Precise measurement of neutrino and anti-neutrino differential cross sections

M. Tzanov; D. Naples; S. Boyd; John McDonald; V. Radescu; R. A. Johnson; N. Suwonjandee; M. Vakili; J. M. Conrad; B.T. Fleming; J. Formaggio; J.H. Kim; S. Koutsoliotas; C. McNulty; A. Romosan; M. H. Shaevitz; P. Spentzouris; E. G. Stern; A. Vaitaitis; E. D. Zimmerman; R. H. Bernstein; L. Bugel; M.J. Lamm; W. Marsh; P. Nienaber; N. Tobien; J. Yu; T. Adams; A. Alton; T. A. Bolton

{\theta}_{13}


Physical Review Letters | 2014

Measurement of coherent production of π(±) in neutrino and antineutrino beams on carbon from Eν of 1.5 to 20 GeV.

A. Higuera; A. Mislivec; L. Aliaga; O. Altinok; A. Bercellie; M. Betancourt; A. Bodek; A. Bravar; W. K. Brooks; H. S. Budd; A. Butkevich; M. F. Carneiro; C. M. Castromonte; M. E. Christy; J. Chvojka; H. da Motta; J. Devan; S. A. Dytman; G. A. Díaz; B. Eberly; J. Felix; L. Fields; R. Fine; G. A. Fiorentini; H. R. Gallagher; A. Gomez; R. Gran; Deborah A. Harris; K. Hurtado; J. Kleykamp

, potentially opening a window to exploring CP violation in the lepton sector. Precision measurements of


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2013

The T2K Side Muon Range Detector (SMRD)

S. Aoki; G. Barr; M. Batkiewicz; J. Blocki; J. Brinson; W. Coleman; A. Dąbrowska; I. Danko; M. Dziewiecki; B. Ellison; L. Golyshkin; R. Gould; T. Hara; J. Haremza; B. Hartfiel; J. Holeczek; A. Izmaylov; M. Khabibullin; A. Khotjantsev; D. Kielczewska; A. Kilinski; J. Kisiel; Y. Kudenko; N. Kulkarni; R. Kurjata; T. Kutter; J. Łagoda; J. Liu; J. Marzec; W. Metcalf

{\theta}_{23}


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2012

The T2K ND280 Off-Axis Pi-Zero Detector

S. Assylbekov; G. Barr; B. E. Berger; H. G. Berns; D. Beznosko; A. Bodek; R. Bradford; N. J. Buchanan; H. S. Budd; Y. Caffari; K. Connolly; I. Danko; R. Das; S. Davis; M. Day; S. A. Dytman; M. Dziomba; R. Flight; D. A. Forbush; K. Gilje; D. Hansen; J. Hignight; J. Imber; R. A. Johnson; C. K. Jung; V. Kravtsov; P. T. Le; G. D. Lopez; C.J. Malafis; S. Manly

from high statistics


Physical Review Letters | 1997

High Statistics Search forνμ(ν¯μ)→νe(ν¯e)Oscillations in the Small Mixing Angle Regime

A. Romosan; C. G. Arroyo; L. de Barbaro; P. de Barbaro; A.O. Bazarko; R. H. Bernstein; A. Bodek; T. A. Bolton; H. S. Budd; J. M. Conrad; R. B. Drucker; D. A. Harris; R. A. Johnson; Jaegwon Kim; B.J. King; T. Kinnel; M.J. Lamm; W.C. Lefmann; W. Marsh; K. S. McFarland; C. McNulty; S.R. Mishra; D. Naples; P. Z. Quintas; W. K. Sakumoto; H. Schellman; F. Sciulli; W.G. Seligman; M. H. Shaevitz; W. H. Smith

{\nu}_{\mu}


Physical Review Letters | 2014

Measurement of Ratios of νμ Charged-Current Cross Sections on C, Fe, and Pb to CH at Neutrino Energies 2–20 GeV

B. G. Tice; M. Datta; J. Mousseau; L. Aliaga; O. Altinok; M. G. Barrios Sazo; M. Betancourt; A. Bodek; A. Bravar; W. K. Brooks; H. S. Budd; M. J. Bustamante; A. Butkevich; D. A. Martinez Caicedo; C. M. Castromonte; M. E. Christy; J. Chvojka; H. da Motta; J. Devan; S. A. Dytman; G. A. Díaz; B. Eberly; J. Felix; L. Fields; G. A. Fiorentini; A. M. Gago; H. R. Gallagher; R. Gran; Deborah A. Harris; A. Higuera

disappearance studies will shed more light on the neutrino mixing matrix and, possibly, elucidate its relation with the quark mixing matrix. Over a similar time-scale, exploiting matter effects, we will probe the neutrino mass hierarchy. Much of the research program will be carried out with accelerator-made neutrino beams in the few-GeV energy range, the challenging boundary between the non-perturbative and perturbative regimes where our lacking physics descriptions are now being exposed by increasingly precise neutrino data. Advancing our understanding of fundamental neutrino properties, will require building a more complete picture of neutrino interactions and reducing the corresponding systematics to the\break

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A. Bodek

University of Rochester

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H. S. Budd

University of Rochester

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R. A. Johnson

University of Cincinnati

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T. A. Bolton

Kansas State University

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J. M. Conrad

Massachusetts Institute of Technology

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J. Formaggio

University of Washington

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