Two theory-driven models of electron ionization cross sections, the Binary-Encounter-Bethe model and the Deutsch-Mark model, have been design and implemented; they are intended to extend the simulation capabilities of the Geant4 toolkit. The resulting values, along with the cross sections included in the EEDL data library, have been compared to an extensive set of experimental data, covering more than 50 elements over the whole periodic table
The binary-encounter dipole (BED) model for electron-impact ionization is applied to helium using th...
There are many measurements and calculations of total electron impact ionisation cross sections. How...
Monte Carlo methods apply various physical models, either condensed history (CH) or track structure ...
Two theory-driven models of electron ionization cross sections, the Binary-Encounter-Bethe model and...
Two theory-driven models of electron ionization cross sections, the Binary-Encounter-Bethe model and...
Two theory-driven models of electron ionization cross sections, the Binary-Encounter-Bethe model and...
Two theory-driven models of electron ionization cross sections, the Binary-Encounter-Bethe model and...
Two models for the calculation of ionization cross sections by electron impact on atoms, the Binary-...
A theoretical model, which is free of adjustable or fitted parameters, for calculating electron impa...
A theoretical model for electron-impact ionization cross sections, which has been developed primaril...
We report preliminary results of an extensive investigation of theoretical and semi-empirical calcul...
Abstract: Theoretical and semi-empirical methods to calculate electron impact ionization cross secti...
Electron-impact total ionization cross sections of some silicon and germanium compounds have been ca...
A theoretical model for electron-impact total ionization cross sections, which has been found to be ...
Theoretical methods to compute accurate x-ray spectra emitted from targets bombarded with kV electro...
The binary-encounter dipole (BED) model for electron-impact ionization is applied to helium using th...
There are many measurements and calculations of total electron impact ionisation cross sections. How...
Monte Carlo methods apply various physical models, either condensed history (CH) or track structure ...
Two theory-driven models of electron ionization cross sections, the Binary-Encounter-Bethe model and...
Two theory-driven models of electron ionization cross sections, the Binary-Encounter-Bethe model and...
Two theory-driven models of electron ionization cross sections, the Binary-Encounter-Bethe model and...
Two theory-driven models of electron ionization cross sections, the Binary-Encounter-Bethe model and...
Two models for the calculation of ionization cross sections by electron impact on atoms, the Binary-...
A theoretical model, which is free of adjustable or fitted parameters, for calculating electron impa...
A theoretical model for electron-impact ionization cross sections, which has been developed primaril...
We report preliminary results of an extensive investigation of theoretical and semi-empirical calcul...
Abstract: Theoretical and semi-empirical methods to calculate electron impact ionization cross secti...
Electron-impact total ionization cross sections of some silicon and germanium compounds have been ca...
A theoretical model for electron-impact total ionization cross sections, which has been found to be ...
Theoretical methods to compute accurate x-ray spectra emitted from targets bombarded with kV electro...
The binary-encounter dipole (BED) model for electron-impact ionization is applied to helium using th...
There are many measurements and calculations of total electron impact ionisation cross sections. How...
Monte Carlo methods apply various physical models, either condensed history (CH) or track structure ...