English

Projection-to-Born-improved Subtractions at NNLO

High Energy Physics - Phenomenology 2024-08-13 v1 High Energy Physics - Experiment

Abstract

While the current frontier in fixed-order precision for collider observables is N3^3LO, important steps are necessary to consolidate NNLO cross-section predictions with improved stability and efficiency. Slicing methods have been successfully applied to obtain NNLO and N3^3LO predictions, but have shown poor performance in the presence of fiducial cuts due to large kinematical power corrections. In this paper we implement Projection-to-Born-improved qTq_T (P2B qTq_T) and jettiness (P2B τ0\tau_0) subtractions for a large class of color singlet processes in MCFM. This method allows for the efficient evaluation of \emph{fiducial} power corrections in any non-local subtraction scheme using a Projection-to-Born subtraction. We demonstrate the significant numerical improvements of this method based on fiducial Drell-Yan and Higgs cross-sections. Moreover, with fiducial power corrections removed via this method, the leading-logarithmic power corrections that have only been calculated without fiducial cuts can be included, further improving the calculations. For di-photon production with photon isolation, we devise a novel method in combination with P2B-improved subtractions, which we name P2BγP2B_\gamma τ0\tau_0, and P2BγP2B_\gamma qTq_T for the two subtraction schemes, respectively. This method allows the inclusion of both fiducial power corrections due to kinematic cuts on the photons and a set of isolation power corrections in the fragmentation channel where a quark may enter the isolation cone. We find significant improvements in the convergence of NNLO di-photon cross-sections with photon isolation cuts, demonstrating that it is possible to achieve a stable and efficient calculation of di-photon cross-sections using slicing methods.

Keywords

Cite

@article{arxiv.2408.05265,
  title  = {Projection-to-Born-improved Subtractions at NNLO},
  author = {John Campbell and Tobias Neumann and Gherardo Vita},
  journal= {arXiv preprint arXiv:2408.05265},
  year   = {2024}
}

Comments

24 pages, 15 figures

R2 v1 2026-06-28T18:08:57.267Z