BFKL pomeron with massive gluons and running coupling
arXiv:1608.03816 · doi:10.1103/PhysRevD.94.096004
Abstract
In this paper we proceed with the study of the Pomeron spectrum, by solving numerically the BFKL equation with massive gluons and running coupling. The spectrum of Regge singularities is discrete and the leading Pomeron has a considerable dependence on nonperturbative effects, for which we use Higgs mechanism as a model. We cross-checked this result with variational method and confirmed the infrared sensitivity of leading Pomeron. This fact is related to the infrared instability of the BFKL equation in QCD, with a running coupling. The subleading poles have a mild sensitivity to the soft physics, and are well described by known semiclassical methods. We also discuss the dependence on various prescriptions of the running coupling arguments.
21 pages, 11 Figures
References in corpus (7)
- Quark contribution to the small- evolution of color dipole
- Triumvirate of Running Couplings in Small-x Evolution
- Running coupling and power corrections in nonlinear evolution at the high--energy limit
- Quark loop contribution to BFKL evolution: Running coupling and leading-N_f NLO intercept
- Using HERA Data to Determine the Infrared Behaviour of the BFKL Amplitude
- The Pomeranchuk Singularity and Vector Boson Reggeization in Electroweak Theory
- Low momentum propagators at two loops in gluon mass model