arXiv · hep-ex/0010051
Energy loss of fast quarks in nuclei
Abstract
We report an analysis of the nuclear dependence of the yield of Drell-Yan dimuons from the 800 GeV/c proton bombardment of $^2H$, C, Ca, Fe, and W targets. Employing a new formulation of the Drell-Yan process in the rest frame of the nucleus, this analysis examines the effect of initial-state energy loss and shadowing on the nuclear-dependence ratios versus the incident proton's momentum fraction and dimuon effective mass. The resulting energy loss per unit path length is $-dE/dz = 2.32 \pm 0.52\pm 0.5$ GeV/fm. This is the first observation of a nonzero energy loss of partons traveling in nuclear environment.
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M. B. Johnson, B. Z. Kopeliovich, I. K. Potashnikova, P. L. McGaughey, J. M. Moss, J. C. Peng, G. T. Garvey, M. J. Leitch, M. R. Adams, D. M. Alde, H. W. Baer, M. L. Barlett, C. N. Brown, W. E. Cooper, T. A. Carey, G. Danner, G. W. Hoffmann, Y. B. Hsiung, D. M. Kaplan, A. Klein, C. Lee, J. W. Lillberg, R. L. McCarthy, C. S. Mishra, M. J. Wang. 2000-10-19. Energy loss of fast quarks in nuclei. https://doi.org/10.1103/physrevlett.86.4483
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