QED Radiative Corrections to Low-Energy Moller and Bhabha Scattering
arXiv:1602.07609 · doi:10.1103/PhysRevD.94.033004
Abstract
We present a treatment of the next-to-leading-order radiative corrections to unpolarized Moller and Bhabha scattering without resorting to ultra-relativistic approximations. We extend existing soft-photon radiative corrections with new hard-photon bremsstrahlung calculations so that the effect of photon emission is taken into account for any photon energy. This formulation is intended for application in the OLYMPUS experiment and the upcoming DarkLight experiment, but is applicable to a broad range of experiments at energies where QED is a sufficient description.
References in corpus (5)
- Matching perturbative and Parton Shower corrections to Bhabha process at flavour factories
- The OLYMPUS Experiment
- MERADGEN 1.0: Monte Carlo generator for the simulation of radiative events in parity conserving doubly-polarized Moller scattering
- Lowest order QED radiative corrections to longitudinally polarized Moller scattering
- The OLYMPUS Internal Hydrogen Target
Cited by in corpus (7)
- PRad-II: A New Upgraded High Precision Measurement of the Proton Charge Radius
- Design and Performance of a Lead Fluoride Detector as a Luminosity Monitor
- Measurement of Moller Scattering at 2.5 MeV
- Realization of a Large-Acceptance Faraday Cup for 3 MeV Electrons
- Lowest-order QED radiative corrections in unpolarized elastic electron-deuteron scattering beyond the ultra-relativistic limit for the proposed deuteron charge radius measurement at Jefferson Laboratory
- Møller scattering at NNLO
- Scientific Opportunities at the ARIEL Electron Linac