Oct 5 – 9, 2026
KIT
Europe/Berlin timezone

Two-Loop Electroweak Renormalization in the Standard Model and NNLO Corrections to $H\to b\bar{b}$

Oct 8, 2026, 5:55 PM
25m
Seminar room 6.1, building 30.23 (KIT)

Seminar room 6.1, building 30.23

KIT

Wolfgang-Gaede-Straße 1

Speaker

Zhe Li (Shandong University)

Description

Next-generation high-energy colliders, including the HL-LHC, and proposed Higgs factories such as FCC-ee, ILC, and CEPC, aim to probe selected Higgs and electroweak observables at the per-mille level. Achieving the required theoretical precision demands NNLO electroweak predictions alongside high-order QCD corrections. However, complete NNLO EW calculations in the SM remain scarce, with a key bottleneck being the absence of a complete and reusable two-loop EW renormalization framework.

In the first part of this talk, I will present our progress toward constructing and validating a complete two-loop on-shell EW renormalization framework for the SM. The discussion will cover mass, field, mixing, and charge renormalization constants, together with sub-loop renormalization, electroweak input schemes, and the treatment of unstable particles.
The second part will focus on the framework’s first phenomenological application: the pure NNLO EW and mixed QCD-EW corrections to the fully inclusive decay width of the Higgs decay proccess $H\to b\bar b+X$. I will discuss the numerical impact and interplay of these corrections, examine their dependence on the EW input scheme, and compare independent implementations in the Feynman–'t Hooft and Landau gauges.

Author

Zhe Li (Shandong University)

Presentation materials

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