The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high fluxes of low energy helium ions is studied as a function of the ion energy, plasma exposure time, and surface temperature. Helium plasma exposure leads to the formation of nanoscopic filaments on the surface of both metals. The size of the helium-induced nanostructure increases with increasing surface temperature while the thickness of the modified layer increases with time. In addition, the growth rate of the nano-structured layer depends on the surface temperature, too. The size of the nanostructure appears linked with the size of the near-surface voids induced by the low energy ions. The results presented here thus demonstrate that surface p...
Several metal surfaces, such as titanium, aluminum and copper, were exposed to highfluxes (in the ra...
Complex surface nanostructures were observed in germanium and silicon samples exposed to low energy ...
Helium irradiation to metals leads to morphology changes in nanometer scale by the forma-tion of hel...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The behavior of iron surfaces under helium plasma exposure is investigated as a function of surface ...
The behavior of iron surfaces under helium plasma exposure is investigated as a function of surface ...
Impingement of high fluxes of helium ions upon metals at elevated temperatures has given rise to the...
The behavior of iron surfaces under helium plasma exposure is investigated as a function of surface ...
Several metal surfaces, such as titanium, aluminum and copper, were exposed to highfluxes (in the ra...
Complex surface nanostructures were observed in germanium and silicon samples exposed to low energy ...
Helium irradiation to metals leads to morphology changes in nanometer scale by the forma-tion of hel...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The formation of metallic nanostructures by exposure of molybdenum and tungsten surfaces to high flu...
The behavior of iron surfaces under helium plasma exposure is investigated as a function of surface ...
The behavior of iron surfaces under helium plasma exposure is investigated as a function of surface ...
Impingement of high fluxes of helium ions upon metals at elevated temperatures has given rise to the...
The behavior of iron surfaces under helium plasma exposure is investigated as a function of surface ...
Several metal surfaces, such as titanium, aluminum and copper, were exposed to highfluxes (in the ra...
Complex surface nanostructures were observed in germanium and silicon samples exposed to low energy ...
Helium irradiation to metals leads to morphology changes in nanometer scale by the forma-tion of hel...