English

Asymmetric Gluon Distributions and Hard Diffractive Electroproduction

High Energy Physics - Phenomenology 2016-09-06 v5

Abstract

The ``asymmetric'' matrix element <p-r|G...G|p> that appears in the pQCD description of hard diffractive electroproduction does not coincide with that defining the gluon distribution function f_g(x). I outline a pQCD formalism based on a concept of the double distribution F_g(x,y), which specifies the fractions xp, yr, (1-y)r of the initial proton momentum p and the momentum transfer r, resp., carried by the gluons. For tr2=0t \equiv r^2 =0, r is proportional to p: r=ζpr = \zeta p, and it is convenient to parameterize the matrix element <p-r|G...G|p> by an asymmetric distribution function Fζg(X){\cal F}_{\zeta}^g (X) depending on the total fractions Xx+yζX \equiv x+y \zeta and Xζ=x(1y)ζX-\zeta = x- (1-y) \zeta of the initial hadron momentum p carried by the gluons.I formulate evolution equations for Fζg(X){\cal F}_{\zeta}^g (X), study some of their general properties and discuss the relationship between Fζg(X){\cal F}_{\zeta}^g (X), F_g(x,y) and f_g(x).

Keywords

Cite

@article{arxiv.hep-ph/9605431,
  title  = {Asymmetric Gluon Distributions and Hard Diffractive Electroproduction},
  author = {A. V. Radyushkin},
  journal= {arXiv preprint arXiv:hep-ph/9605431},
  year   = {2016}
}

Comments

Definition of asymmetric gluon distribution is corrected to conform with the reduction formulas

R2 v1 2026-07-22T14:31:35.057Z