paper

Unitarity dressing of the dynamical gluon mass scale

arXiv:2609.10903

Abstract

We study the effect of -channel unitarity on the dynamical gluon mass scale, , extracted from high-energy elastic scattering. The elementary input is a Reggeized Landshoff--Nachtmann two-gluon exchange, in which the soft Pomeron is represented by a color-singlet pair of dynamically massive gluons. At Born level, the logarithmic and power-law mass solutions give --$422~\MeV$, in the usual phenomenological range. When the same input is embedded in the eikonal and -matrix schemes, the preferred values move to --$1101~\MeV$. The enhancement, by a factor close to , is stable against the ATLAS--TOTEM data choice, the running of the gluon mass, and the unitarization prescription. We trace this shift to the nonlinear mapping between the elementary two-gluon kernel and the physical impact-parameter profile. The scale inferred from elastic scattering is therefore a unitarity-dressed infrared scale, fixed jointly by the nonperturbative gluon propagator and by multiple-exchange dynamics.

8 pages, 4 figures, 2 tables