English

Drell-Yan Transverse-Momentum Spectra at N$^3$LL$'$ and Approximate N$^4$LL with SCETlib

High Energy Physics - Phenomenology 2025-03-04 v2

Abstract

We provide state-of-the-art precision QCD predictions for the fiducial WW and ZZ boson transverse momentum spectra at the LHC at N3^3LL' and approximate N4^4LL in resummed perturbation theory, matched to available O(αs3)\mathcal{O}(\alpha_s^3) fixed-order results. Our predictions consistently combine all information from across the spectrum in a unified way, ranging from the nonperturbative region of small transverse momenta to the fixed-order tail, with an emphasis on estimating the magnitude of residual perturbative uncertainties, and in particular of those related to the matching. Parametric uncertainties related to the strong coupling, the collinear PDFs, and the nonperturbative transverse momentum-dependent (TMD) dynamics are studied in detail. To assess the latter, we explicitly demonstrate how the full complexity of flavor and Bjorken xx-dependent TMD dynamics can be captured by a single, effective nonperturbative function for the resonant production of any given vector boson at a given collider. We point out that the cumulative pTZp_T^Z cross section at the level of precision enabled by our predictions provides strong constraining power for PDF determinations at full N3^3LO.

Keywords

Cite

@article{arxiv.2411.16004,
  title  = {Drell-Yan Transverse-Momentum Spectra at N$^3$LL$'$ and Approximate N$^4$LL with SCETlib},
  author = {Georgios Billis and Johannes K. L. Michel and Frank J. Tackmann},
  journal= {arXiv preprint arXiv:2411.16004},
  year   = {2025}
}

Comments

51 pages + appendices and references, 19 figures, 6 tables; v2: journal version (numerical results and discussion added to figs. 2, 3, 16; references added)