Diffractive color-dipole nucleon scattering
arXiv:hep-ph/9707426 · doi:10.1103/PhysRevD.57.4097
Abstract
We determine the diffractive scattering amplitude of a color-dipole on a nucleon using a non-perturbative model of QCD which contains only parameters taken from low-energy physics. This allows to relate specific features of the confinement mechanisms with diffractive electro-production processes and structure functions. The agreement with phenomenological data is satisfactory.
7 pages, 5 eps-figures, uses epsf
References in corpus (1)
Cited by in corpus (10)
- Field correlators in QCD. Theory and applications
- Extracting the dipole cross-section from photo- and electro-production total cross-section data
- Impact parameter dependent S-matrix for dipole-proton scattering from diffractive meson electroproduction
- S-Matrix Unitarity, Impact Parameter Profiles, Gluon Saturation and High-Energy Scattering
- Confining QCD Strings, Casimir Scaling, and a Euclidean Approach to High-Energy Scattering
- The Odderon in Quantum Chromodynamics
- Two Photon Reactions at High Energies
- Decomposition of the QCD String into Dipoles and Unintegrated Gluon Distributions
- Odd C-P contributions to diffractive processes
- From Static Potentials to High-Energy Scattering