Applications of the leading-order Dokshitzer-Gribov-Lipatov-Altarelli-Parisi evolution equations to the combined HERA data on deep inelastic scattering
Abstract
We recently derived explicit solutions of the leading-order Dokshitzer-Gribov-Lipatov-Altarelli-Parisi (DGLAP) equations for the Q2 evolution of the singlet structure function Fs(x,Q2) and the gluon distribution G(x,Q2) using very efficient Laplace transform techniques. We apply our results here to a study of the HERA data on deep inelastic ep scattering as recently combined by the H1 and ZEUS groups. We use initial distributions F2γ p(x,Q02) and G(x,Q02) fixed by a global fit to the HERA data. From F2γ p(x,Q02) we obtain the singlet quark distribution Fs(x,Q02)---using small non-singlet quark distributions taken from either the CTEQ6L or the MSTW2008LO analyses---evolve to arbitrary Q2, and then convert the results to individual quark distributions. Finally, we show directly from a study of systematic trends in a comparison of the evolved F2γ p(x,Q2) with the HERA data, that the assumption of leading-order DGLAP evolution is inconsistent with those data.
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