English

Flavor Singlet Contribution to the Structure Function $g_1$ at Small-x

High Energy Physics - Phenomenology 2014-11-17 v1

Abstract

The singlet contribution to the g1(x,Q2)g_1(x,Q^2) structure function is calculated in the double-logarithmic approximation of perturbative QCD in the region x1x \ll 1. Double logarithmic contributions of the type (αsln2(1/x))k(\alpha_s \ln ^2 (1/x))^k which are not included in the GLAP evolution equations are shown to give a power-like rise at small-x which is much stronger than the extrapolation of the GLAP expressions. The dominant contribution is due to the gluons which, in contrast to the unpolarized case, mix with the fermions also in the region x1x \ll 1. The two main reasons why the small-x behavior of the double logarithmic approximation is so much stronger than the usual GLAP evolution are: the larger kinematical region of integration (in particular, no ordering in transverse momentum) and the contributions from non-ladder diagrams.

Keywords

Cite

@article{arxiv.hep-ph/9603204,
  title  = {Flavor Singlet Contribution to the Structure Function $g_1$ at Small-x},
  author = {J. Bartels and B. I. Ermolaev and M. G. Ryskin},
  journal= {arXiv preprint arXiv:hep-ph/9603204},
  year   = {2014}
}

Comments

LaTeX with 9 Figures in a separate file. Full file also available at http://www.desy.de/ftp/pub/preprints/desy/1996/desy96-025.ps and http://www.desy.de/ftp/pub/preprints/desy/1996/desy96-025.fig1.ps

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