This article presents the results of work concerned with the reflection of metastable helium atoms with thermal kinetic energy by a monocrystalline surface of molybdenum / 110/, as a function of angle of incidence and degree of oxygen coverage. Measurements were taken with a time of flight method. The reflection coefficient, very low with small angles of incidence, is greater with high angles, and increases with the rate of exposure to a controlled oxygen atmosphere. The form of the reflection lobes is also strongly influenced by these two parameters.Cet article présente des résultats concernant la réflexion d'atomes métastables d'hélium d'énergie cinétique thermique par une surface monocristalline de molybdène /110/, en fonction de l'angle...
Low energy ion scattering (LEIS) was employed for the analysis of thin films of Mo, Ru, Hf, Al and t...
We investigated the impact of surface oxygen on the ion yield for He+ ions scattered from different ...
Adsorption of oxygen on the Mo (112) surface precovered with a pseudomorphic monolayer of beryllium ...
An investigation has been made of the interaction of helium metastable atoms (2³S and 2¹S) with meta...
We present an extensive study on the structure of oxygen adsorbates on Mo(112) by means of grazing s...
Low energy electron diffraction study of oxygen adsorption on molybdenum /111/ surfac
A study of the clean and oxygen‐covered molybdenum (110) surface has been carried out using low‐ener...
The adsorption of oxygen on Rh(111) and of carbon dioxide also on Rh(111) and on Ni(110) was investi...
We have investigated the interaction of oxygen with Ag(111) by using a supersonic molecular beam in ...
In this study the metallization transition that occurs during the growth of ultrathin alkali metal (...
We describe results of a study of the adsorption of oxygen on the (100) molybdenum face by électron ...
We studied the interaction of a medium coverage cesiated molybdenum surface with atomic and molecula...
The strong electronic interaction between electronically excited metastable helium atoms (He"*)...
For a number of candidate materials of construction for the dual air density explorer satellites the...
Atomic oxygen adsorption on the Mo(112) surface has been investigated by means of first-principles t...
Low energy ion scattering (LEIS) was employed for the analysis of thin films of Mo, Ru, Hf, Al and t...
We investigated the impact of surface oxygen on the ion yield for He+ ions scattered from different ...
Adsorption of oxygen on the Mo (112) surface precovered with a pseudomorphic monolayer of beryllium ...
An investigation has been made of the interaction of helium metastable atoms (2³S and 2¹S) with meta...
We present an extensive study on the structure of oxygen adsorbates on Mo(112) by means of grazing s...
Low energy electron diffraction study of oxygen adsorption on molybdenum /111/ surfac
A study of the clean and oxygen‐covered molybdenum (110) surface has been carried out using low‐ener...
The adsorption of oxygen on Rh(111) and of carbon dioxide also on Rh(111) and on Ni(110) was investi...
We have investigated the interaction of oxygen with Ag(111) by using a supersonic molecular beam in ...
In this study the metallization transition that occurs during the growth of ultrathin alkali metal (...
We describe results of a study of the adsorption of oxygen on the (100) molybdenum face by électron ...
We studied the interaction of a medium coverage cesiated molybdenum surface with atomic and molecula...
The strong electronic interaction between electronically excited metastable helium atoms (He"*)...
For a number of candidate materials of construction for the dual air density explorer satellites the...
Atomic oxygen adsorption on the Mo(112) surface has been investigated by means of first-principles t...
Low energy ion scattering (LEIS) was employed for the analysis of thin films of Mo, Ru, Hf, Al and t...
We investigated the impact of surface oxygen on the ion yield for He+ ions scattered from different ...
Adsorption of oxygen on the Mo (112) surface precovered with a pseudomorphic monolayer of beryllium ...