How fast do small x structure function rise ? A comparative analysis
arXiv:hep-ph/9903397 · doi:10.1016/S0370-2693(99)00650-4
Abstract
We parametrize the small x, singlet component of the proton structure function F_2 by powers and logarithms of 1/x for discrete values of Q^2 between 0.2 and 2000 GeV^2, and compare these parametrizations by applying the criterion of minimal . The obtained values of the fitted parameters may be used to study the evolution of F_2 in Q^2 and/or in discriminating between dynamical models. A slowing-down in the increase of F_2 towards highest available values of Q^2 is revealed. The effect is quantified in terms of the derivative .
9 pages (LaTeX), including 4 figures (eps), condensed revised version
Cited by in corpus (10)
- Ultra-high energy neutrino-nucleon interactions
- Analytical evolution of nucleon structure functions with power corrections at twist-4 and predictions for ultra-high energy neutrino-nucleon cross section
- Pomeron effective intercept, logarithmic derivatives of in DIS and Regge models
- The Challenge of Small x
- Updating spin-dependent Regge intercepts
- The hard pomeron intercept and the data on the proton unpolarized structure function
- Off mass shell dual amplitude with Mandelstam analyticity
- Explicit Model Realizing Parton-Hadron Duality
- Low-x Physics
- Damping of the HERA effect in DIS?