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Hadronic effects in Møller scattering at NNLO

Published 24 Feb 2022 in hep-ph | (2202.11976v2)

Abstract: Two-loop electroweak corrections to polarized Moller scattering are studied in two different schemes at low energies. We find the finite $Q2$ corrections to be well under control. The hadronic and perturbative QCD corrections to the $\gamma Z$ two-point function are incorporated through the weak mixing angle at low energies, which introduce an error of $0.08\times10{-3}$ in the weak charge of the electron $Qe_W$. Furthermore, by studying the scheme dependence, we obtain an estimate of the current perturbative electroweak uncertainty, $\delta Qe_W\approx0.23\times10{-3}$, which is five times smaller than the precision estimated for the MOLLER experiment $(\delta Q_We=1.1\times10{-3})$. Future work is possible to reduce the theory error further.

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