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arXiv:2606.11061·v2·High Energy Physics — Phenomenology

Endpoint Logarithms in the NLO Mueller-Navelet Jet Vertex: Threshold Matching and BLM/MOM Prescription Sensitivity

Lei Wang🇨🇳

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Abstract

The endpoint region of the NLO forward jet vertex has not been systematically separated from BFKL energy-scale terms in Mueller-Navelet phenomenology. Starting from the small-cone NLO vertex, we isolate the quark and gluon plus distributions and construct a BFKL-aware threshold matching scheme that preserves exact NLO accuracy. The conservative Scheme-II exponent resums only the ordinary endpoint logarithms and leaves the term in the fixed-order coefficient, avoiding an uncontrolled tower of mixed endpoint-BFKL logarithms. In fixed-baseline CMS tests, this matched vertex is a controlled deformation of an optimized-NLL pointwise BLM/MOM calculation: it moves in the high- direction favored by CMS, but it does not improve or in the same prescription. A coefficient-projected table-BLM diagnostic improves the absolute moments but lowers and is sensitive to the large- tail. Thus the endpoint matching is internally consistent and phenomenologically informative, while the present setup does not provide a simultaneous description of all five CMS azimuthal observables.

Comments: This paper is being withdrawn because the numerical results contain errors that require significant revisions

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