A model developed by the Materials Research Group that calculates electron penetration range of some common materials, has been greatly expanded with the hope that such extensions will predict the range in other, perhaps, more interesting materials. Developments in this extended model aid in predicting the approximate penetration depth into diverse classes of materials for a broad range of energetic incident electrons (\u3c10 eV to\u3e10 MeV, with better than 20% accuracy). The penetration depth—or range—of a material describes the maximum distance electrons can travel through a material, before losing all of its incident kinetic energy. This model has started to predict a formula that estimates the penetration depth for materials without t...
The electron range is a measure of the straight-line penetration distance of electrons in a solid [1...
The secondary electron yield is a critical process in establishing the charge balance in spacecraft ...
Using Monte Carlo simulations we have studied the electron mean energy, Ē(o), and the most probable ...
A model developed by the Materials Research Group that calculates electron penetration range of some...
A model has been developed to predict the approximate penetration depth into diverse classes of mate...
The penetration range of energetic electrons into diverse materials can be modeled approximately wit...
The penetration range of an electron into diverse materials can be estimated using an approximation ...
A simple composite analytic expression has been developed to approximate the electron range in mater...
The Continuous-Slow-Down Approximation (CSDA) is used to create a simple composite analytical formul...
The continuous-slow-down approximation (CSDA) is used to create a simple composite analytical formul...
Secondary Electron Yield is a key parameter in spacecraft charging. In order to develop a robust mod...
Empirical correlation of high energy electrons into materials allows predictions of practical ranges...
A new definition is proposed for the range of fast (1 keV - 50 keV) electrons in solid materials: th...
An empirical model that predicts the approximate electron penetration depth—or range—of some common ...
International audienceThe Secondary Electron Emission (SEE) process plays an important role in the p...
The electron range is a measure of the straight-line penetration distance of electrons in a solid [1...
The secondary electron yield is a critical process in establishing the charge balance in spacecraft ...
Using Monte Carlo simulations we have studied the electron mean energy, Ē(o), and the most probable ...
A model developed by the Materials Research Group that calculates electron penetration range of some...
A model has been developed to predict the approximate penetration depth into diverse classes of mate...
The penetration range of energetic electrons into diverse materials can be modeled approximately wit...
The penetration range of an electron into diverse materials can be estimated using an approximation ...
A simple composite analytic expression has been developed to approximate the electron range in mater...
The Continuous-Slow-Down Approximation (CSDA) is used to create a simple composite analytical formul...
The continuous-slow-down approximation (CSDA) is used to create a simple composite analytical formul...
Secondary Electron Yield is a key parameter in spacecraft charging. In order to develop a robust mod...
Empirical correlation of high energy electrons into materials allows predictions of practical ranges...
A new definition is proposed for the range of fast (1 keV - 50 keV) electrons in solid materials: th...
An empirical model that predicts the approximate electron penetration depth—or range—of some common ...
International audienceThe Secondary Electron Emission (SEE) process plays an important role in the p...
The electron range is a measure of the straight-line penetration distance of electrons in a solid [1...
The secondary electron yield is a critical process in establishing the charge balance in spacecraft ...
Using Monte Carlo simulations we have studied the electron mean energy, Ē(o), and the most probable ...