Model independent radiative corrections to elastic deuteron-electron scattering
arXiv:1804.01399 · doi:10.1103/PhysRevC.98.045212
Abstract
The differential cross section for elastic scattering of deuterons on electrons at rest is calculated taking into account the QED radiative corrections to the leptonic part of interaction. These model-independent radiative corrections arise due to emission of the virtual and real soft and hard photons as well as to vacuum polarization. We consider an experimental setup where both final particles are recorded in coincidence and their energies are determined within some uncertainties. The kinematics, the cross section, and the radiative corrections are calculated and numerical results are presented.
18 pages, 10 figures, 3 tables. arXiv admin note: substantial text overlap with arXiv:1612.02139
References in corpus (11)
- The Proton Radius Puzzle
- Two-Photon Physics in Hadronic Processes
- Measurement of the two-photon exchange contribution to the elastic scattering cross sections at the VEPP-3 storage ring
- Two-photon exchange in elastic electron-proton scattering
- Hard Two-Photon Contribution to Elastic Lepton-Proton Scattering: Determined by the OLYMPUS Experiment
- Polarization Transfer Observables in Elastic Electron Proton Scattering at 2.5, 5.2, 6.8, and 8.5 GeV
- Deuteron charge radius and Rydberg constant from spectroscopy data in atomic deuterium
- Review of experimental and theoretical status of the proton radius puzzle
- Measuring the deviation from the Rutherford formula
- Radiative corrections to elastic proton-electron scattering measured in coincidence
- A discussion of deuteron transverse charge densities
Cited by in corpus (4)
- MUonE, muon and electroweak precision constraints within 2HDMs
- Deuteron wave function for Reid93 potential and polarization observables in elastic lepton-deuteron scattering
- 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
- Implications of the muon anomalous magnetic moment for the LHC and MUonE