arXiv:1612.08273·v2·High Energy Physics — Phenomenology
Dynamical model of antishadowing of the nuclear gluon distribution
L. Frankfurt (Tel Aviv U. & Penn State U.)🇮🇱 · V. Guzey (St. Petersburg, INT)🇷🇺 · M. Strikman (Penn State U.)🇺🇸
Abstract
We explore the theoretical observation that within the leading twist approximation, the nuclear effects of shadowing and antishadowing in non-perturbative nuclear parton distribution functions (nPDFs) at the input QCD evolution scale involve diffraction on nucleons of a nuclear target and originate from merging of two parton ladders belonging to two different nucleons, which are close in the rapidity space. It allows us to propose that for a given momentum fraction carried by the diffractive exchange, nuclear shadowing and antishadowing should compensate each other in the momentum sum rule for nPDFs locally on the interval . We realize this by constructing an explicit model of nuclear gluon antishadowing, which has a wide support in , , peaks at at the level of \% for Pb at GeV and rather insignificantly depends on details of the model. We also studied the impact parameter dependence of antishadowing and found it to be slow.
Comments: 11 pages, 9 figures. Additional figures and discussion to compare to competing approaches. Final published version