Physical Review A · 1990 · 36 citations · 15 references
EngineeringSuperelastic ElectronLaser ApplicationsElectron DiffractionComputational ChemistryElectron OpticElectron PhysicElectron SpectroscopyOptical PropertiesElectron-impact Coherence ParametersFinite Scattering VolumeModel CalculationsComputational ElectromagneticsPhysicsRelativistic Laser-matter InteractionAtomic PhysicsQuantum ChemistrySynchrotron RadiationSuperelastic Scattering IntensityNatural SciencesSpectroscopyApplied PhysicsWave Scattering
Superelastic electron scattering from laser-excited $^{138}\mathrm{Ba}$(. . .6s6p $^{1}$P) is investigated both theoretically and experimentally. The theoretical framework is developed and incorporated into a model of a realistic scattering geometry of finite spatial extent. Model calculations predict that the dependence of the superelastic scattering intensity on the linear polarization direction of the laser beam can be severely distorted due to the existence of a finite scattering volume. Our measurements confirm the presence of this distortion and are well described by the model calculations. Conclusions are drawn concerning the influence of this effect on the extraction of electron-impact coherence parameters.
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Impact Excitation and Polarization of the Emitted Light
U. Fano, J. H. Macek · Reviews of Modern Physics · 1973 · 946 citations
Electron-photon angular correlation in atomic physics
K Blum, Hans Kleinpoppen · Physics Reports · 1979 · 197 citations