DOE OSTI · 3390993
First constraints on the nonperturbative gluon Collins-Soper kernel
Abstract
The gluon Collins-Soper kernel, which encodes the rapidity evolution of transverse-momentum-dependent gluon distributions, is constrained for the first time in the nonperturbative regime, for transverse momentum scales $q_{T} \in [ 300\text{ MeV}, 1.3\text{ GeV}]$. The constraints are determined in lattice QCD at a close-to-physical pion mass $M_π= 172(3)\text{ MeV}$, a single lattice spacing $a=0.15\text{ fm}$, and next-to-next-to-leading logarithmic matching in Large-Momentum Effective Theory. These results represent the first step toward a controlled determination of the gluon Collins-Soper kernel in QCD, with eventual phenomenological import and relevance to present and future experiments sensitive to the gluon structure of hadronic matter.
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Avkhadiev, Artur [Argonne; MIT, Cambridge, CTP], Fu, Yang [MIT, Cambridge, CTP], Shanahan, Phiala E. [MIT, Cambridge, CTP], Wagman, Michael L. [Fermilab], Zhao, Yong [Argonne]. 2026-07-27. First constraints on the nonperturbative gluon Collins-Soper kernel. https://www.osti.gov/biblio/3390993
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