arXiv · 2602.22972
NNLO QCD corrections to hadron production in DIS at finite transverse momentum
Abstract
We present the first calculation of hadron production in deep-inelastic scattering (DIS) at finite transverse momentum to next-to-next-to-leading order (NNLO) in perturbative QCD. To overcome the long-standing challenge of infrared divergences in semi-inclusive processes with identified final state hadrons at finite transverse momentum, we implement the recently developed qT-subtraction framework based on the recoil-free jet definition. By utilizing the winner-take-all recombination scheme, we achieve a consistent factorization for hadron-jet associated production, enabling the inclusion of $O(\alpha_s^3)$ corrections. Our NNLO results generally demonstrate an improved convergence of the perturbative expansion and a reduction in scale uncertainties compared to previous next-to-leading order ones, especially for comparisons to multiplicity data from the ZEUS Collaboration. This work provides a high-precision theoretical foundation for the upcoming electron-ion collider era and establishes a new benchmark for the exploration of the nucleon's three-dimensional structure.
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Liang Dong, Shen Fang, Jun Gao, Hai Tao Li, Ding Yu Shao, Yu Jiao Zhu. 2026-02-26. NNLO QCD corrections to hadron production in DIS at finite transverse momentum. https://doi.org/10.1103/bf1g-9hq7
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