The Collins-Soper kernel, which governs the energy evolution of transverse-momentum dependent parton distribution functions (TMDPDFs), is required to accurately predict Drell-Yan like processes at small transverse momentum, and is a key ingredient for extracting TMDPDFs from experiment. Earlier we proposed a method to calculate this kernel from ratios of the so-called quasi-TMDPDFs determined with lattice QCD, which are defined as hadronic matrix elements of staple-shaped Euclidean Wilson line operators. Here we provide the one-loop renormalization of these operators in a regularization-independent momentum subtraction (RI′/MOM) scheme, as well as the conversion factor from the RI′/MOM-renormalized quasi-TMDPDF to the MS scheme. We also propose a procedure for calculating the Collins-Soper kernel directly from position space correlators, which simplifies the lattice determination.
@article{arxiv.1910.08569,
title = {Renormalization and Matching for the Collins-Soper Kernel from Lattice QCD},
author = {Markus A. Ebert and Iain W. Stewart and Yong Zhao},
journal= {arXiv preprint arXiv:1910.08569},
year = {2020}
}
Comments
27 pages + appendices, 5 figures; v2: journal version