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Spin Force Dependence Of Nucleon Structure Functions

Nuclear Theory 2009-09-25 v1

Abstract

Deep inelastic structure functions for the nucleon are obtained in a constituent quark model on the light cone. In the Bjorken limit the parton model is derived. Structure functions from the hadronic tensor at the scale μ0.25\mu \sim 0.25 GeV are evolved from (0.6 GeV)2)^{2} to q215-q^{2}\sim 15 GeV2^{2}. The model incorporates the quark boosts, is designed to describe form factors and structure functions, and to provide a link between the parton and constituent quark models. The main effect of the spin force between quarks is described in terms of smaller (and lighter) scalar udu-d quark pairs in the nucleon. To account for the negative slope of F2n(x)/F2p(x)F^{n}_{2}(x)/F^{p}_{2}(x), attraction between scalar udu-d quark pairs and incorporation of boosts are required. The two-body spin force between quarks from color magnetism also leads to a negative slope. The polarization asymmetry A1pA^{p}_{1} is in fair agreement with the EMC data in the valence quark region. Revised hep-ph/9401342, Phys. Rev. D.

Keywords

Cite

@article{arxiv.nucl-th/9404009,
  title  = {Spin Force Dependence Of Nucleon Structure Functions},
  author = {H. J. Weber},
  journal= {arXiv preprint arXiv:nucl-th/9404009},
  year   = {2009}
}

Comments

Final version for Phys.Rev.D Sign error in Chapter 5 on color magnetism is corrected along with discussion and conclusions. 7 Figures are available from author

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