[[abstract]]©1982 WILEY - Values of k and p are given for predicting inelastic mean free paths for electrons with energies from 200 eV to 10 keV from the simple formula = kEp, based on theoretical calculations for ten elemental and compound solids. These results indicate that in the energy range 400 eV E 2000 eV, the value of p lies in the range 0.65-0.80. For Si and SiO2, presentation of the available experimental data and theoretical results illustrate the differences which exist in the values of electron mean free paths.[[department]]醫環
The code Inelastic_calculation.cpp calculates the inelastic mean free path, differential inelastic ...
Photoemission data in which the signal from the first atomic layer is well resolved from that of th...
The most established approach for ‘practical’ calculations of the inelastic mean free path (IMFP) of...
We present a summary of recent calculations of the electron inelastic mean free paths (IMFPs) of 50-...
The inelastic mean free path of electrons (IMFP) is an important material parameter for description ...
The experimental values of Inelastic Mean Free Path (λ$\text{}_{IMFP}$) of electrons in noble metals...
The inelastic mean free path (IMFP) is a key parameter of electron transport in a solid. With\nthe r...
The correlation between the inelastic mean free path of secondary electrons emitted during bombardme...
We propose a simple formula for fitting the electron mean free paths in solids both at high and at l...
[[abstract]]©1992 IOP - The electron inelastic mean free path is of basic importance in theoretical ...
The energy loss functions (ELFs) of three transition metals (Cr, Co and Pd) have been derived from r...
[[abstract]]©2005 Elsevier - Theoretical derivations of the inelastic differential inverse mean free...
We have determined the electron stopping power (SP) and inelastic mean free path (IMFP) of (ZrO2)x(S...
Energetic electrons scattering elastically over large angles from atoms lose energy depending on the...
Using a Green’s-function approach that incorporates band-structure effects, and a complementary k-sp...
The code Inelastic_calculation.cpp calculates the inelastic mean free path, differential inelastic ...
Photoemission data in which the signal from the first atomic layer is well resolved from that of th...
The most established approach for ‘practical’ calculations of the inelastic mean free path (IMFP) of...
We present a summary of recent calculations of the electron inelastic mean free paths (IMFPs) of 50-...
The inelastic mean free path of electrons (IMFP) is an important material parameter for description ...
The experimental values of Inelastic Mean Free Path (λ$\text{}_{IMFP}$) of electrons in noble metals...
The inelastic mean free path (IMFP) is a key parameter of electron transport in a solid. With\nthe r...
The correlation between the inelastic mean free path of secondary electrons emitted during bombardme...
We propose a simple formula for fitting the electron mean free paths in solids both at high and at l...
[[abstract]]©1992 IOP - The electron inelastic mean free path is of basic importance in theoretical ...
The energy loss functions (ELFs) of three transition metals (Cr, Co and Pd) have been derived from r...
[[abstract]]©2005 Elsevier - Theoretical derivations of the inelastic differential inverse mean free...
We have determined the electron stopping power (SP) and inelastic mean free path (IMFP) of (ZrO2)x(S...
Energetic electrons scattering elastically over large angles from atoms lose energy depending on the...
Using a Green’s-function approach that incorporates band-structure effects, and a complementary k-sp...
The code Inelastic_calculation.cpp calculates the inelastic mean free path, differential inelastic ...
Photoemission data in which the signal from the first atomic layer is well resolved from that of th...
The most established approach for ‘practical’ calculations of the inelastic mean free path (IMFP) of...