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arXiv:2604.27314·v1·High Energy Physics — Phenomenology

Planar master integrals for two-loop NLO electroweak light-fermion contributions to

Shu-Xiang Li🇨🇳 · Ren-You Zhang🇨🇳 · Xiao-Feng Wang🇨🇳 · Pan-Feng Li · Xiang-Jie Wei🇨🇳 · Yi Wang🇨🇳 · Yi Jiang🇨🇳 · Qing-hai Wang🇨🇳

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Abstract

For the two-loop next-to-leading-order electroweak (NLO EW) corrections to , the light-fermion contributions can be classified into eight distinct topologies. Using the canonical differential-equations method, we perform an analytic computation of the master integrals (MIs) associated with the four planar topologies. Canonical bases are constructed using the Magnus-expansion method, and the resulting alphabets consist of algebraic symbol letters involving nontrivial radicals. We develop a systematic framework for identifying the radical structures of the canonical MIs, enabling their organization into suitable subsystems and, whenever possible, their representation in terms of Goncharov polylogarithms (GPLs) up to . Only a few MIs at and are instead represented as one-fold integrals over GPLs, due to the presence of nested square roots that obstruct the simultaneous rationalization of all radicals.

Comments: 41 pages and 4 figures

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