Electrons continually interact with the matter around us. We use electron beams for our purposes, either on the side of production of materials or on that of their characterization. Let us think to the many applications such as the processing of materials with plasma and to the local melting of materials for joining large components. We use electron beams also in the electron lithography, an important technique utilized for the production of the microelectronics devices. Let us consider the importance of the beams of electrons in the characterization of the materials, performed using techniques such as the electron microscopy and all the electron spectroscopies. Electrons interact with the surfaces of the space-crafts. The plasma– wall inte...
Les électrons de basse énergie (0-30 eV) sont impliqués en tant que source d'excitation primaire ou ...
Based on the fundamental potential function of the power and exponential forms, a diffusion model of...
In transmission electron microscopy (TEM) the interaction of an electron beam with polymers such as ...
This new edition describes all the mechanisms of elastic and inelastic scattering of electrons with ...
This new edition describes all the mechanisms of elastic and inelastic scattering of electrons with ...
We have studied the radial dependence of the energy deposition of the secondary electron generated b...
The ionization yield of ion tracks in polymers and bio-molecular systems reaches a maximum, known as...
In modern physics we are interested in systems with many degrees of freedom. The Monte Carlo (MC) me...
The use of proton beams in several modern technologies to probe or modify the properties of material...
Electron spectroscopy techniques based on the interaction of electrons with matter are one of the mo...
[[abstract]]©2005 Elsevier - Theoretical derivations of the inelastic differential inverse mean free...
High energy electrons incident on a solid target interact with the target material in several ways, ...
This paper deals with the calculation of the differential inverse inelastic mean free path, the inel...
A brief outline is given of the processes of knock-on damage and electronic damage in electron micro...
A knowledge of electron behaviour in the matter is needed, from a fundamental point of view in scann...
Les électrons de basse énergie (0-30 eV) sont impliqués en tant que source d'excitation primaire ou ...
Based on the fundamental potential function of the power and exponential forms, a diffusion model of...
In transmission electron microscopy (TEM) the interaction of an electron beam with polymers such as ...
This new edition describes all the mechanisms of elastic and inelastic scattering of electrons with ...
This new edition describes all the mechanisms of elastic and inelastic scattering of electrons with ...
We have studied the radial dependence of the energy deposition of the secondary electron generated b...
The ionization yield of ion tracks in polymers and bio-molecular systems reaches a maximum, known as...
In modern physics we are interested in systems with many degrees of freedom. The Monte Carlo (MC) me...
The use of proton beams in several modern technologies to probe or modify the properties of material...
Electron spectroscopy techniques based on the interaction of electrons with matter are one of the mo...
[[abstract]]©2005 Elsevier - Theoretical derivations of the inelastic differential inverse mean free...
High energy electrons incident on a solid target interact with the target material in several ways, ...
This paper deals with the calculation of the differential inverse inelastic mean free path, the inel...
A brief outline is given of the processes of knock-on damage and electronic damage in electron micro...
A knowledge of electron behaviour in the matter is needed, from a fundamental point of view in scann...
Les électrons de basse énergie (0-30 eV) sont impliqués en tant que source d'excitation primaire ou ...
Based on the fundamental potential function of the power and exponential forms, a diffusion model of...
In transmission electron microscopy (TEM) the interaction of an electron beam with polymers such as ...