On the shape of a rapid hadron in QCD
arXiv:0811.3737 · doi:10.1016/j.physletb.2009.07.015
Abstract
We visualize the fundamental property of pQCD: the smaller size of the colorless quark-gluon configurations leads to a more rapid increase of its interaction with energy. Within the frame of dipole model we use the factorization theorem to generalize the DGLAP approximation and/or leading approximation and evaluate the interaction of quark dipole with a target. In the limit of fixed and we found the increase with energy of transverse momenta of quark(antiquark) within q pair produced by strongly virtual photon. The average is evaluated analytically within the double logarithmic approximation. We demonstrate that the invariant mass of the q pair increases with the energy as , where for transverse photons, and as for longitudinal photons, where at the energies of the order GeV (). The magnitude of the effect depends strongly on the small behavior of the gluon distribution. Similar pattern of the energy dependence of is found in the LO DGLAP approximation generalized to account for factorization. We discuss the impact of the found phenomenon on the dependence of the coherence length on the initial energy and demonstrate that the shape of final hadron state in DIS has biconcave form instead of pancake. Some implications of the found phenomena for the hard processes in pp collisions are discussed.
14 pages, 2 figures, uses epstopdf.sty typos corrected