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A measurement of the ratio of the nucleon structure function in copper and deuterium

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Zeitschrift für Physik C Particles and Fields

Abstract

Results are presented on the ratios of the nucleon structure function in copper to deuterium from two separate experiments. The data confirm that the nucleon structure function,F 2, is different for bound nucleons than for the quasi-free ones in the deuteron. The redistribution in the fraction of the nucleon's momentum carried by quarks is investigated and it is found that the data are compatible with no integral loss of quark momenta due to nuclear effects.

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References

  1. EMC, J.J. Aubert et al.: Phys. Lett. 123B (1983) 275

    Google Scholar 

  2. A. Bodek et al.: Phys. Rev. Lett. 50 (1983) 1431; A. Bodek et al.: Phys. Rev. Lett. 51 (1983) 534

    Google Scholar 

  3. BCDMS, G. Bari et al.: Phys. Lett. 163B (1985) 282; A.C. Benvenuti et al.: Phys. Lett. B189 (1987) 483

    Google Scholar 

  4. SLAC, E-139 R.G. Arnold et al. Phys. Rev. Lett. 52 (1984) 727

    Google Scholar 

  5. EMC, J.J. Aubert et al.: Nucl. Phys. B293 (1987) 740

    Google Scholar 

  6. EMC, J. Ashman et al.: Phys. Lett. 202B (1988) 603

    Google Scholar 

  7. J.D. Gillies: D. Phil. Thesis. University of Oxford (1988), RALT-077

  8. H. Peschel: Ph.D. Thesis. University of Wuppertal (1990)

  9. L. Ropelewski: Ph.D. Thesis. University of Warsaw (in preparation)

  10. A. Staiano: Ph.D. Thesis. University of Heidelberg (1989)

  11. J. Ashman: PhD Thesis. University of Sheffield (1988)

  12. NMC, P. Amaudruz et al.: Z. Phys. C51 (1991) 387

    Google Scholar 

  13. NMC, P. Amaudruz et al.: Z. Phys. C53 (1992) 73

    Google Scholar 

  14. SLAC, E140, S. Dasu et al.: Phys. Rev. Letts. 60 (1988) 2591

    Google Scholar 

  15. O.C. Allkofer et al.: Nucl. Instrum. Methods 179 (1981) 445

    Google Scholar 

  16. EMC, J. Ashman et al.: Phys. Lett. 206B (1988) 364

    Google Scholar 

  17. EMC, J. Ashman et al.: Nucl. Phys. B328 (1989) 1

    Google Scholar 

  18. R. Mount: Nucl. Instrum. Methods 187 (1981) 401

    Google Scholar 

  19. L. Mo, Y.S. Tsai: Rev. Mod. Phys. 41 (1969) 205; Y.S. Tsai: SLAC-PUB-848 (1971)

    Google Scholar 

  20. NMC, D. Allasia et al.: Phys. Lett. B249 (1990) 366 NMC, P. Amaudraz et al.: Nucl. Phys. B371 (1992) 3

    Google Scholar 

  21. H.W.K. Cheung: D. Phil. Thesis. University of Oxford (1987) RALT-055

  22. M. Arneodo et al.: Phys. Lett. 211B (1988) 493; M. Arneodo et al.: Nucl. Phys. B333 (1990) 1

    Google Scholar 

  23. L. Frankfurt, M. Strikman: Phys. Rep. 160 (1988) 235

    Google Scholar 

  24. R.J.M. Covalan, E. Predazzi: Problems of fundamental modern physics. Singapore: World Scientific 1991

    Google Scholar 

  25. M.Arneodo: CERN PPE92-113 (to be published in Phys. Rep.)

  26. F.E. Close, R.G. Roberts, G. Ross: Phys. Lett. 168B (1986) 400; F.E. Close, R.G. Roberts: Phys. Lett. 213B (1988) 91

    Google Scholar 

  27. W. Zhu: Phys. Lett. 235B (1990) 170

    Google Scholar 

  28. L. Guaglie, C. Zhijun, Z. Chasheng: Beijing preprint BIHEP-TH-89-29 (1989)

  29. T. Sloan, G. Smadja, R. Voss: Phys. Rep. 162 (1988) 45

    Google Scholar 

  30. M. Arneodo: Ph.D. Thesis. University of Princeton (1992)

  31. O. Nachtmann: Nucl. Phys. B78 (1974) 455

    Google Scholar 

  32. The reanalysed version of the data in [4] was used for Fig. 8 see A. Bodek: Proc. of the Lepton-Photon Symposium and Europhysics Conference LP-HEP 91. Geneva (1991)

  33. N.N. Nikolaev, V.I. Zacharov: Phys. Lett. B55 (1975) 397

    Google Scholar 

  34. E665, M.R. Adams et al.: Fermilab-Pub-92/51-E

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Supported by Bundesministerium für Forschung und Technologie

Supported by CPBP.01.06

Supported by CPBP.01.09

University of Warsaw, Poland,partly supported by CPBP-01.06

Deceased

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European Muon Collaboration., Ashman, J., Badelek, B. et al. A measurement of the ratio of the nucleon structure function in copper and deuterium. Z. Phys. C - Particles and Fields 57, 211–218 (1993). https://doi.org/10.1007/BF01565050

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  • DOI: https://doi.org/10.1007/BF01565050

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