A screened Rutherford cross section is modified by means of a correction factor to obtain the proper transport cross section computed by partial¿wave analysis. The correction factor is tabulated for electron energies in the range 0¿100 keV and for elements in the range from Z=4 to 82. The modified screened Rutherford cross section is shown to be useful as an approximation for the simulation of plural and multiple scattering. Its performance and limitations are exemplified for electrons scattered in Al and Au
The elastic scattering cross section of keV electrons over large angles (>90°) is discussed. A compa...
A new method of calculating elastic and inelastic cross sections for electron-atom and electron-ion ...
In this Letter, an expression is presented to calculate elastic scattering cross sections for incide...
A screened Rutherford cross section is modified by means of a correction factor to obtain the proper...
A screened Rutherford cross section is modified by means of a correction factor to obtain the proper...
We describe an algorithm for mixed (class II) simulation of electron multiple elastic scattering usi...
ABSTRACT: An approximation of the differential elastic scattering cross-section based on that of Rut...
Abstract: The effect of screening by atomic electrons on the scattering of relativistic electrons by...
The interaction of electrons with matter has been a subject of intense work since the beginning of...
The elastic scattering cross sections, $\sigma (E,\theta )$, for the systems He+Ta and He+W have bee...
Monte Carlo simulations are very useful for many physical processes. The transport of particles was ...
The effect of screening by atomic electrons on the scattering of relativistic electrons by heavy ato...
Differential and transport electron-atom elastic scattering cross sections have been computed for a ...
Since the 1940s, much attention has been devoted to the problem of accurate theoretical description ...
A robust numerical algorithm for the calculation of multiple-scattering angular distributions of hig...
The elastic scattering cross section of keV electrons over large angles (>90°) is discussed. A compa...
A new method of calculating elastic and inelastic cross sections for electron-atom and electron-ion ...
In this Letter, an expression is presented to calculate elastic scattering cross sections for incide...
A screened Rutherford cross section is modified by means of a correction factor to obtain the proper...
A screened Rutherford cross section is modified by means of a correction factor to obtain the proper...
We describe an algorithm for mixed (class II) simulation of electron multiple elastic scattering usi...
ABSTRACT: An approximation of the differential elastic scattering cross-section based on that of Rut...
Abstract: The effect of screening by atomic electrons on the scattering of relativistic electrons by...
The interaction of electrons with matter has been a subject of intense work since the beginning of...
The elastic scattering cross sections, $\sigma (E,\theta )$, for the systems He+Ta and He+W have bee...
Monte Carlo simulations are very useful for many physical processes. The transport of particles was ...
The effect of screening by atomic electrons on the scattering of relativistic electrons by heavy ato...
Differential and transport electron-atom elastic scattering cross sections have been computed for a ...
Since the 1940s, much attention has been devoted to the problem of accurate theoretical description ...
A robust numerical algorithm for the calculation of multiple-scattering angular distributions of hig...
The elastic scattering cross section of keV electrons over large angles (>90°) is discussed. A compa...
A new method of calculating elastic and inelastic cross sections for electron-atom and electron-ion ...
In this Letter, an expression is presented to calculate elastic scattering cross sections for incide...