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  • Measurement of the EMC effe...
    Arrington, J.; Bane, J.; Daniel, A.; Fomin, N.; Gaskell, D.; Seely, J.; Asaturyan, R.; Benmokhtar, F.; Boeglin, W.; Bosted, P.; Bukhari, M. H. S.; Christy, M. E.; Connell, S.; Dalton, M. M.; Day, D.; Dunne, J.; Dutta, D.; El Fassi, L.; Ent, R.; Fenker, H.; Gao, H.; Holt, R. J.; Horn, T.; Hungerford, E.; Jones, M. K.; Jourdan, J.; Kalantarians, N.; Keppel, C. E.; Kiselev, D.; Lung, A. F.; Malace, S.; Meekins, D. G.; Mertens, T.; Mkrtchyan, H.; Niculescu, G.; Niculescu, I.; Potterveld, D. H.; Perdrisat, C.; Punjabi, V.; Qian, X.; Reimer, P. E.; Roche, J.; Rodriguez, V. M.; Rondon, O.; Schulte, E.; Slifer, K.; Smith, G. R.; Solvignon, P.; Tadevosyan, V.; Tang, L.; Testa, G.; Trojer, R.; Tvaskis, V.; Wesselmann, F. R.; Wood, S. A.; Yuan, L.; Zheng, X.

    Physical review. C, 12/2021, Volume: 104, Issue: 6
    Journal Article

    In this work, inclusive electron scattering from nuclear targets has been measured to extract the nuclear dependence of the inelastic cross section in Hall C at the Thomas Jefferson National Accelerator facility. Results are presented for 2H, 3He, 4He, 9B, 12C, 63Cu and 197Au at an incident electron beam energy of 5.77 GeV for a range of momentum transfer from Q2 = 2 to 7 (GeV/c)2. These data improve the precision of the existing measurements of the EMC effect in the nuclear targets at large x, and allow for more detailed examinations of the A dependence of the EMC effect.