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Impulsive Electron-Impact Double Ionization and the Two-Electron Momentum Density

28

Citations

10

References

1999

Year

Abstract

Cross sections for electron-impact double ionization of magnesium have been measured in a triple coincidence experiment. When the momentum transfer is large, the double-ionization cross section as a function of the angle of the motion of the center of mass of the two ejected electrons closely resembles the analogous variation of the single-ionization cross section when the electron is ejected in a quasielastic binary collision. Assuming that the similarity in the shape of the cross section implies a similarity in the high-momentum-transfer ionization mechanism, atomic two-electron momentum densities have been derived from the data. Two-electron densities provide information on electron correlation in the atom.

References

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