Adamson, P.Andreopoulos, C.Arms, K. E.Armstrong, R.Auty, D. J.Ayres, D. S.Backhouse, C.Barnes, P. D.Barr, G.Barrett, W. L.Bhattacharya, D.Bishai, M.Blake, A.Bock, G. J.Boehnlein, D. J.Bogert, D.Bower, C.Cavanaugh, S.Chapman, J. D.Cherdack, D.Childress, S.Choudhary, B. C.Coelho, J. A. B.Coleman, S. J.Cronin-Hennessy, D.Culling, A. J.Danko, I. Z.de Jong, J. K.Devenish, N. E.Diwan, M. V.Dorman, M.Erwin, A. R.Escobar, C. O.Evans, J. J.Falk, E.Feldman, GaryFrohne, M. V.Gallagher, H. R.Godley, A.Goodman, M. C.Gouffon, P.Gran, R.Grashorn, E. W.Grzelak, K.Habig, A.Harris, D.Harris, P. G.Hartnell, J.Hatcher, R.Heller, K.Himmel, A.Holin, A.Hylen, J.Irwin, G. M.Isvan, Z.Jaffe, D. E.James, C.Jensen, D.Kafka, T.Kasahara, S. M. S.Kim, J. J.Koizumi, G.Kopp, S.Kordosky, M.Koskinen, D. J.Krahn, Z.Kreymer, A.Lang, K.Ling, J.Litchfield, P. J.Litchfield, R. P.Loiacono, L.Lucas, P.Ma, J.Mann, W. A.Marshak, M. L.Marshall, J. S.Mayer, N.McGowan, A. M.Mehdiyev, R.Meier, J. R.Messier, M. D.Metelko, C. J.Michael, D. G.Miller, W. H.Mishra, S. R.Mitchell, J.Moore, C. D.Morfín, J.Mualem, L.Mufson, S.Musser, J.Naples, D.Nelson, J. K.Newman, H. B.Nichol, R. J.Nicholls, T. C.Ochoa-Ricoux, J. P.Oliver, W. P.Osiecki, T.Ospanov, R.Paley, J.Paolone, V.Patterson, R. B.Pavlović, Ž.Pawloski, G.Pearce, G. F.Petyt, D. A.Pittam, R.Plunkett, R. K.Rahaman, A.Rameika, R. A.Raufer, T. M.Rebel, B.Rodrigues, P. A.Rosenfeld, C.Rubin, H. A.Ryabov, V. A.Sanchez, M. C.Saoulidou, N.Schneps, J.Schreiner, P.Semenov, V. K.Shanahan, P.Smart, W.Smith, C.Sousa, A.Stamoulis, P.Strait, M.Tagg, N.Talaga, R. L.Thomas, J.Thomson, M. A.Tinti, G.Toner, RuthTsarev, V. A.Tzanakos, G.Urheim, J.Vahle, P.Viren, B.Watabe, M.Weber, A.Webb, R. C.West, N.White, C.Whitehead, L.Wojcicki, S. G.Wright, D. M.Yang, T.Zois, M.Zhang, K.Zwaska, R.2016-09-132010Adamson, P., C. Andreopoulos, K. E. Arms, R. Armstrong, D. J. Auty, D. S. Ayres, C. Backhouse, et al. 2010. “Neutrino and Antineutrino Inclusive Charged-Current Cross Section Measurements with the MINOS Near Detector.” Phys. Rev. D 81 (7) (April 8). doi:10.1103/physrevd.81.072002.1550-7998http://nrs.harvard.edu/urn-3:HUL.InstRepos:28447073The energy dependence of the neutrino-iron and antineutrino-iron inclusive charged-current cross sections and their ratio have been measured using a high-statistics sample with the MINOS near detector exposed to the NuMI beam from the main injector at Fermilab. Neutrino and antineutrino fluxes were determined using a low hadronic energy subsample of charged-current events. We report measurements of ν−Fe (ν⎯⎯−Fe) cross section in the energy range 3–50 GeV (5–50 GeV) with precision of 2%–8% (3%–9%) and their ratio which is measured with precision 2%–8%. The data set spans the region from low energy, where accurate measurements are sparse, up to the high-energy scaling region where the cross section is well understood.en-USneutrino nucleus: inclusive reactionantineutrino nucleus: inclusive reactionironcharged currentneutrino/mu: secondary beamneutrino/mu: fluxcross section: energy dependencecross section: ratioMINOSnear detectorFermilab3-50 GeVOSG : MINOSNeutrino and antineutrino inclusive charged-current cross section measurements with the MINOS near detectorJournal Article2016-09-1310.1103/PhysRevD.81.072002