Strange Content of the Nucleon (NuTeV)
NuTeV Collaboration, T. Adams, A. Alton, S. Avvakumov, L. de Barbaro, P. de Barbaro, R. H. Bernstein, A. Bodek, T. Bolton, J. Brau, D. Buchholz, H. Budd, L. Bugel, J. Conrad, R. B. Drucker, R. Frey, J. Formaggio, J. Goldman, M. Goncharov, D. A. Harris, R. A. Johnson, S. Koutsoliotas, J. H. Kim, M. J. Lamm, W. Marsh, D. MASON, C. McNulty, K. S. McFarland, D. Naples, P. Nienaber, A. Romosan, W. K. Sakumoto, H. Schellman, M. H. Shaevitz, P. Spentzouris, E. G. Stern, B. Tamminga, M. Vakili, A. Vaitaitis, V. Wu, U. K. Yang, J. Yu, G. P. Zeller
Abstract
The NuTeV experiment uses neutrino deep-inelastic scattering from separate neutrino and anti-neutrino beams to study the structure of the nucleon. Charged-current production of charm is sensitive to the strange content of the nucleon while neutral-current charm production probes the charm content. Preliminary analyses of both topics are presented along with discussion of possible momentum asymmetry in the strange sea.
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