Towards a single scale-dependent Pomeron in holographic light-front QCD
Abstract
The Pomeron Regge trajectory underlies the dynamics dependence of hadronic total cross sections and diffractive reactions at high energies. The physics of the Pomeron is closely related to the gluon distribution function and the gluon gravitational form factor of the target hadron. In this article we examine the scale dependence of the nonperturbative gluon distribution in the nucleon and the pion which was derived in a previous article [Phys. Rev. D 104, 114005 (2021)] in the framework of holographic light-front QCD and the Veneziano model. We argue that the QCD evolution of the gluon distribution function to large leads to a single scale-dependent Pomeron. The resulting Pomeron trajectory not only depends on the momentum transfer squared , but also on the physical scale of the amplitude, such as the virtuality of the interacting photon in inclusive diffractive electroproduction. This can explain not only the evolution of the proton structure function at small , but also the observed energy and dependence of high energy diffractive processes involving virtual photons up to LHC energies.
Cite
@article{arxiv.2201.09813,
title = {Towards a single scale-dependent Pomeron in holographic light-front QCD},
author = {Hans Günter Dosch and Guy F. de Téramond and Tianbo Liu and Raza Sabbir Sufian and Stanley J. Brodsky and Alexandre Deur},
journal= {arXiv preprint arXiv:2201.09813},
year = {2022}
}
Comments
22 pages, 6 figures