There has been impressive progress in the theoretical treatment of electron collisions with atoms in the last decade. As a result, the fundamental collision problems of electron-hydrogen or electron-helium scattering are now understood fairly well. For heavier atoms, an accurate treatment of atomic ionization remains more elusive than atomic excitation due to the final-state three-body Coulomb problem. For higher impact energies, the first-order distorted-wave Born approximation is typically in reasonable agreement with fully differential cross sections (FDCS) for ionization. However, FDCS measurements are starting to be reported for lower incident electron energies and here agreement between experiment and theory is not good. In this paper...
The measurement of fully differential cross sections (FDCS) for ion impact has become possible only ...
A full quantum mechanical version of the three-body distorted wave-eikonal initial state (3DW-EIS) t...
We report fully differential cross-section calculations using distorted wave theories for helium sin...
Three-dimensional fully differential cross sections for heavy-particle-impact ionization of helium a...
Measurements of fully differential cross sections for electron impact ionization of atoms have been ...
Electron Impact ionization of atoms provides a fundamental test of the current understanding of atom...
We report fully differential cross section (FDCS) calculations and absolute measurements for ion-ato...
We report fully differential cross-section calculations using distorted wave theories for helium sin...
We report fully differential cross section (FDCS) calculations and absolute measurements for ion-ato...
We report fully differential cross sections (FDCS) for the single ionization of helium by a 75 keV i...
Three-dimensional fully differential cross sections for heavy-particle-impact ionization of helium a...
There have been several studies of electron-impact ionization of inert gases for asymmetric final st...
First order distorted wave Born approximation (DWBA) triple differential cross sections are reported...
We have measured and calculated fully differential cross sections (FDCS) for ionization of helium by...
We consider the recently measured case of 730 eV electron-impact ionization of the ground state of h...
The measurement of fully differential cross sections (FDCS) for ion impact has become possible only ...
A full quantum mechanical version of the three-body distorted wave-eikonal initial state (3DW-EIS) t...
We report fully differential cross-section calculations using distorted wave theories for helium sin...
Three-dimensional fully differential cross sections for heavy-particle-impact ionization of helium a...
Measurements of fully differential cross sections for electron impact ionization of atoms have been ...
Electron Impact ionization of atoms provides a fundamental test of the current understanding of atom...
We report fully differential cross section (FDCS) calculations and absolute measurements for ion-ato...
We report fully differential cross-section calculations using distorted wave theories for helium sin...
We report fully differential cross section (FDCS) calculations and absolute measurements for ion-ato...
We report fully differential cross sections (FDCS) for the single ionization of helium by a 75 keV i...
Three-dimensional fully differential cross sections for heavy-particle-impact ionization of helium a...
There have been several studies of electron-impact ionization of inert gases for asymmetric final st...
First order distorted wave Born approximation (DWBA) triple differential cross sections are reported...
We have measured and calculated fully differential cross sections (FDCS) for ionization of helium by...
We consider the recently measured case of 730 eV electron-impact ionization of the ground state of h...
The measurement of fully differential cross sections (FDCS) for ion impact has become possible only ...
A full quantum mechanical version of the three-body distorted wave-eikonal initial state (3DW-EIS) t...
We report fully differential cross-section calculations using distorted wave theories for helium sin...