Abstract
The x- and Q{sup 2}-dependence of the patron structure function of the pomeron is investigated based on perturbative QCD. We demonstrate that a large gluon content and small size of pomeron leads to strong non-linear QCD effects in the Q{sup 2}-evolution as described by the Gribov-Levin-Ryskin equation. In diffractive electron-proton scattering at HERA this phenomenon should be observable and is predicted to be of larger magnitude than the corresponding non-linear effect in the proton structure function. (orig.).
Citation Formats
Ingelman, G, and Janson-Prytz, K.
Non-linear QCD effects in the pomeron parton dynamics.
Germany: N. p.,
1992.
Web.
Ingelman, G, & Janson-Prytz, K.
Non-linear QCD effects in the pomeron parton dynamics.
Germany.
Ingelman, G, and Janson-Prytz, K.
1992.
"Non-linear QCD effects in the pomeron parton dynamics."
Germany.
@misc{etde_10143655,
title = {Non-linear QCD effects in the pomeron parton dynamics}
author = {Ingelman, G, and Janson-Prytz, K}
abstractNote = {The x- and Q{sup 2}-dependence of the patron structure function of the pomeron is investigated based on perturbative QCD. We demonstrate that a large gluon content and small size of pomeron leads to strong non-linear QCD effects in the Q{sup 2}-evolution as described by the Gribov-Levin-Ryskin equation. In diffractive electron-proton scattering at HERA this phenomenon should be observable and is predicted to be of larger magnitude than the corresponding non-linear effect in the proton structure function. (orig.).}
place = {Germany}
year = {1992}
month = {Jan}
}
title = {Non-linear QCD effects in the pomeron parton dynamics}
author = {Ingelman, G, and Janson-Prytz, K}
abstractNote = {The x- and Q{sup 2}-dependence of the patron structure function of the pomeron is investigated based on perturbative QCD. We demonstrate that a large gluon content and small size of pomeron leads to strong non-linear QCD effects in the Q{sup 2}-evolution as described by the Gribov-Levin-Ryskin equation. In diffractive electron-proton scattering at HERA this phenomenon should be observable and is predicted to be of larger magnitude than the corresponding non-linear effect in the proton structure function. (orig.).}
place = {Germany}
year = {1992}
month = {Jan}
}