Collinear and TMD distributions with dynamical soft-gluon resolution scale
Abstract
Soft-gluon resolution scales characterize parton branching Monte Carlo implementations of the evolution equations for parton distribution functions in Quantum Chromodynamics (QCD). We examine scenarios with dynamical, i.e., branching-scale dependent, resolution scale, and discuss physical implications for both collinear and transverse-momentum dependent (TMD) distributions. We perform the first determination of parton distributions with dynamical resolution scale, at next-to-leading order (NLO) in perturbation theory, from fits to precision deep-inelastic scattering measurements from HERA. We present an application of TMD distributions with dynamical resolution scale to Drell-Yan lepton-pair transverse momentum spectra at the LHC, and comment on the extraction of non-perturbative intrinsic-kT parameters from Drell-Yan data at small transverse momenta.
Cite
@article{arxiv.2502.19380,
title = {Collinear and TMD distributions with dynamical soft-gluon resolution scale},
author = {F. Hautmann and L. Keersmaekers and A. Lelek and S. Sadeghi Barzani and S. Taheri Monfared},
journal= {arXiv preprint arXiv:2502.19380},
year = {2025}
}
Comments
v2: matches published version in JHEP