arXiv:hep-ph/0407098·v1·High Energy Physics — Phenomenology
Global QCD fit from to GeV with Regge-compatible initial condition
Abstract
In this paper I show that it is possible to use Regge theory to constrain the initial parton distribution functions of a global DGLAP fit. In this approach, both quarks and gluons have the same high-energy behaviour which may also be used to describe soft interactions. More precisely, I show that, if we parametrise the parton distributions with a triple-pole pomeron, {\em i.e.} like at small , at and evolve these distribution with the DGLAP equation, we can reproduce , , , and for GeV. In this case, we obtain a new leading-order global QCD fit with a Regge-compatible initial condition. I shall also show that it is possible to use Regge theory to extend the parton distribution functions to small . This leads to a description of the structure functions over the whole range based on Regge theory at low and on QCD at large . Finally, I shall argue that, at large , the parton distribution functions obtained from DGLAP evolution and containing an essential singularity at can be approximated by a triple-pole pomeron behaviour.
Comments: 42 pages, 18 figures