paper

Mixed QCD-EW corrections to -pair production at electron-positron colliders

arXiv:2401.01323 · doi:10.1007/JHEP12(2024)038

Abstract

The discrepancy between the CDF measurement and the Standard Model theoretical prediction for the -boson mass underscores the importance of conducting high-precision studies on the boson, which is one of the predominant objectives of proposed future colliders. We investigate in detail the production of -boson pairs at colliders, and compute the next-to-next-to-leading order mixed QCD-EW corrections to both the integrated cross section and various kinematic distributions. By employing the method of differential equations, we analytically calculate the two-loop master integrals for the mixed QCD-EW virtual corrections to . Utilizing the Magnus transformation, we derive a set of canonical master integrals for each integral family. This canonical basis satisfies a system of differential equations in which the dependence on the dimensional regulator is linearly factorized from the kinematics. We then express all these canonical master integrals as Taylor series in up to , with coefficients articulated in terms of Goncharov polylogarithms up to weight four. Upon applying our analytic expressions of these master integrals to the phenomenological analysis of -pair production, we observe that the corrections are significantly impactful in the scheme, particularly in certain phase-space regions. However, these mixed QCD-EW corrections can be heavily suppressed by adopting the scheme.

34 pages, 10 figures