Total cross sections (TCS) and single differential cross sections (SDCS) have been computed for the single ionization of the ground state of helium by electron impact in a distorted wave formalism which takes into account the effects of the initial and final channel distortions. The present TCS and SDCS results are in fair agreement with the measured values and other theoretical predictions for the incident electron energy $E_{\rm i} > 150$ eV
Absolute experimental measurements have been reported for the fully differential cross section (FDCS...
We examine the time-dependent close-coupling (TDCC) approach to electron-impact singleionization of ...
Fully differential cross sections for single ionization of helium induced by impact of 100 MeV/u C6+...
Total cross sections (TCS) and single differential cross sections (SDCS) have been computed for the ...
In a recent publication we presented detailed experimental and theoretical results for the electron-...
We present experimental and theoretical fully differential cross sections for the single ionization ...
We present experimental and theoretical fully differential cross sections for single ionization of H...
We have studied the electron emission angular distributions for single ionization of helium atoms in...
Triple-differential cross sections for electron-impact ionization of helium are calculated in the di...
The triple differential cross sections for electron impact ionization of a helium atom is studied us...
Total cross sections for electron impact ionization have been calculated in the energy range 40-150 ...
The triple differential cross sections for electron impact ionization of a helium atom is studied us...
The measurement of fully differential cross sections (FDCS) for ion impact has become possible only ...
The first chapter, of this thesis is devoted to the development of the theory for the ionization of ...
In a recent publication we presented detailed experimental and theoretical results for the electron-...
Absolute experimental measurements have been reported for the fully differential cross section (FDCS...
We examine the time-dependent close-coupling (TDCC) approach to electron-impact singleionization of ...
Fully differential cross sections for single ionization of helium induced by impact of 100 MeV/u C6+...
Total cross sections (TCS) and single differential cross sections (SDCS) have been computed for the ...
In a recent publication we presented detailed experimental and theoretical results for the electron-...
We present experimental and theoretical fully differential cross sections for the single ionization ...
We present experimental and theoretical fully differential cross sections for single ionization of H...
We have studied the electron emission angular distributions for single ionization of helium atoms in...
Triple-differential cross sections for electron-impact ionization of helium are calculated in the di...
The triple differential cross sections for electron impact ionization of a helium atom is studied us...
Total cross sections for electron impact ionization have been calculated in the energy range 40-150 ...
The triple differential cross sections for electron impact ionization of a helium atom is studied us...
The measurement of fully differential cross sections (FDCS) for ion impact has become possible only ...
The first chapter, of this thesis is devoted to the development of the theory for the ionization of ...
In a recent publication we presented detailed experimental and theoretical results for the electron-...
Absolute experimental measurements have been reported for the fully differential cross section (FDCS...
We examine the time-dependent close-coupling (TDCC) approach to electron-impact singleionization of ...
Fully differential cross sections for single ionization of helium induced by impact of 100 MeV/u C6+...