Single ionization of helium by 70.6-eV electron impact is studied in a comprehensive experiment covering a major part of the entire collision kinematics and the full 4π solid angle for the emitted electron. The absolutely normalized triple-differential experimental cross sections are compared with results from the convergent close-coupling (CCC) and the time-dependent close-coupling (TDCC) theories. Whereas excellent agreement with the TDCC prediction is only found for equal energy sharing, the CCC calculations are in excellent agreement with essentially all experimentally observed dynamical features, including the absolute magnitude of the cross sections
In a recent publication we presented detailed experimental and theoretical results for the electron-...
We present experimental and theoretical fully differential cross sections for single ionization of H...
We discuss common features and differences in the fully differential cross sections (FDCS) for the e...
Single ionization of helium by 70.6-eV electron impact is studied in a comprehensive experiment cove...
Single ionization of helium by 70.6 eV electron impact is studied in a comprehensive experiment cove...
Single ionization of helium by 70.6 eV electron impact is studied in a comprehensive experiment cove...
We examine the time-dependent close-coupling (TDCC) approach to electron-impact singleionization of ...
©2015 American Physical Society. We report a combined experimental and theoretical study on the elec...
The convergent close-coupling and the time-dependent close-coupling methods are applied to the calcu...
The measurement of fully differential cross sections (FDCS) for ion impact has become possible only ...
The convergent close-coupling (CCC) method is applied to the calculation of electron–helium ionizati...
We establish the total single ionization cross section for electron-impact ionization of helium, to ...
Low energy electron impact single ionization triple differential cross section (TDCS) results are re...
The dynamics of He double ionization by 2 keV electron impact is studied experimentally for a moment...
We present fully differential measurements of 730-eV electron-impact single ionization of the ground...
In a recent publication we presented detailed experimental and theoretical results for the electron-...
We present experimental and theoretical fully differential cross sections for single ionization of H...
We discuss common features and differences in the fully differential cross sections (FDCS) for the e...
Single ionization of helium by 70.6-eV electron impact is studied in a comprehensive experiment cove...
Single ionization of helium by 70.6 eV electron impact is studied in a comprehensive experiment cove...
Single ionization of helium by 70.6 eV electron impact is studied in a comprehensive experiment cove...
We examine the time-dependent close-coupling (TDCC) approach to electron-impact singleionization of ...
©2015 American Physical Society. We report a combined experimental and theoretical study on the elec...
The convergent close-coupling and the time-dependent close-coupling methods are applied to the calcu...
The measurement of fully differential cross sections (FDCS) for ion impact has become possible only ...
The convergent close-coupling (CCC) method is applied to the calculation of electron–helium ionizati...
We establish the total single ionization cross section for electron-impact ionization of helium, to ...
Low energy electron impact single ionization triple differential cross section (TDCS) results are re...
The dynamics of He double ionization by 2 keV electron impact is studied experimentally for a moment...
We present fully differential measurements of 730-eV electron-impact single ionization of the ground...
In a recent publication we presented detailed experimental and theoretical results for the electron-...
We present experimental and theoretical fully differential cross sections for single ionization of H...
We discuss common features and differences in the fully differential cross sections (FDCS) for the e...