English

Diffractive dissociation and saturation scale from non-linear evolution in high energy DIS

High Energy Physics - Phenomenology 2011-09-13 v1

Abstract

This paper presents the first numerical solution to the non-linear evolution equation for diffractive dissociation processes in deep inelastic scattering. It is shown that the solution depends on one scaling variable τ=Q2/QsD2(x,x0)\tau = Q^2/Q^{D 2}_s(x,x_0), where QsD(x,x0)Q^D_s(x,x_0) is the saturation scale for the diffraction processes. The dependence of the saturation scale QsD(x,x0)Q^D_s(x,x_0) on both xx and x0x_0 is investigated, (Y0=ln(1/x0)Y_0 = \ln(1/x_0) is a minimal rapidity gap for the diffraction process). The xx - dependence of QsDQ^D_s turns out to be the same as of the saturation scale in the total inclusive DIS cross section. In our calculations QsD(x,x0)Q^D_s(x,x_0) reveals only mild dependence on x0x_0. The scaling is shown to hold for xx0x \ll x_0 but is violated at xx0 x \sim x_0.

Keywords

Cite

@article{arxiv.hep-ph/0108239,
  title  = {Diffractive dissociation and saturation scale from non-linear evolution in high energy DIS},
  author = {E. Levin and M. Lublinsky},
  journal= {arXiv preprint arXiv:hep-ph/0108239},
  year   = {2011}
}

Comments

13 pages, 9 figures

R2 v1 2026-07-22T13:35:53.472Z