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Renormalization-Group Improved Resummation of Super-Leading Logarithms

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arxiv 2405.05305 v2 pith:WTLR56OJ submitted 2024-05-08 hep-ph

Renormalization-Group Improved Resummation of Super-Leading Logarithms

classification hep-ph
keywords super-leadingcorrectionsexchangesglauberhigher-orderimprovedlogarithmiclogarithms
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A new strategy is presented for systematically treating super-leading logarithmic contributions including higher-order Glauber exchanges for non-global LHC observables in renormalization-group (RG) improved perturbation theory. This represents an important improvement over previous approaches, as it allows for the consistent inclusion of the scale dependence of the strong coupling, thereby providing more reliable estimates of the scale uncertainties in theoretical predictions. The key idea is to rearrange the relevant RG evolution operator in such a way that all double-logarithmic corrections are exponentiated from the outset. This forms the starting point for the first resummation of super-leading logarithms at leading order in RG-improved perturbation theory for arbitrary $2\to M$ scattering processes. Moreover, the asymptotic scaling of subleading logarithmic corrections from higher-order Glauber exchanges is determined, demonstrating their parametric suppression.

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Forward citations

Cited by 2 Pith papers

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    A decomposition splits the most singular dipole term of the N-jettiness soft function into an inclusive soft function and a remainder that is absent at NLO, finite at NNLO, and subtractable at N3LO, enabling NNLO resu...

  2. Low-energy theory of jet processes and PDF factorization

    hep-ph 2025-09 conditional novelty 6.0

    A three-loop Glauber contribution to low-energy soft-collinear matrix elements exactly cancels the collinear factorization-violating terms, so DGLAP running and PDF factorization are consistent with super-leading logarithms.