Quadratic electroweak corrections for polarized Moller scattering
arXiv:1110.1750 · doi:10.1103/PhysRevD.85.013007
Abstract
The paper discusses the two-loop (NNLO) electroweak radiative corrections to the parity violating electron-electron scattering asymmetry induced by squaring one-loop diagrams. The calculations are relevant for the ultra-precise 11 GeV MOLLER experiment planned at Jefferson Laboratory and experiments at high-energy future electron colliders. The imaginary parts of the amplitudes are taken into consideration consistently in both the infrared-finite and divergent terms. The size of the obtained partial correction is significant, which indicates a need for a complete study of the two-loop electroweak radiative corrections in order to meet the precision goals of future experiments.
References in corpus (1)
Cited by in corpus (6)
- Low Energy Measurements of the Weak Mixing Angle
- Parity-Violating Møller Scattering at NNLO: Closed Fermion Loops
- Two-loop electroweak vertex corrections for polarized Møller scattering
- Search for Physics beyond Standard Model at the Precision Frontiers
- Recurrence Relations and Dispersive Techniques for Precision Multi-Loop Calculations
- Left-right asymmetry calculation comparisons and projected sensitivity to the weak mixing angle in polarized Bhabha scattering at 10.58 GeV