The concentration of helium in tungsten fuzz-like nanostructures has been measured by means of thermal desorption spectroscopy. Fuzz was formed on the W surface under intensive plasma irradiation at 1500 K. The helium content was measured first in the as-irradiated sample, and then in a similar sample with the fuzz mechanically scraped from the sample surface. The difference gave the He content in the fuzz, which was estimated to be He/ W = (13 ± 4)%
Helium retention is measured in tungsten samples exposed to mixed H/He plasma in the Magnum-PSI line...
Using the linear plasma device NAGDIS-II operating with gas mixtures of helium (He) and impurity (Ne...
To evaluate Helium (He) effect on hydrogen isotope retention in tungsten (W), He+ was introduced int...
The concentration of helium in tungsten fuzz-like nanostructures has been measured by means of therm...
Helium (He) concentrations in tungsten nano-tendrils (W fuzz) have been measured for the first time ...
AbstractTungsten samples are exposed to 3He plasma to quantify their helium retention behavior. The ...
Tungsten samples are exposed to 3He plasma to quantify their helium retention behavior. The retentio...
Recent experimental results on tungsten surface morphology, especially nano-structure (fuzz), induce...
In order to confirm the formation of a tungsten fiberform nanostructure (W-fuzz) by helium plasma ex...
The DIONISOS experiment is used to study the impact of RF helium (He) plasma on the surface morpholo...
From the helium (He) plasma irradiations to tungsten performed in the Magnum-PSI device, the effects...
Impact of crystal orientation on the surface morphology of the helium plasma exposed tungsten has be...
Experiments were performed in the Pilot-PSI linear plasma device to study the formation of helium-in...
Experiments were performed in the Pilot-PSI linear plasma device to study the formation of helium-in...
The mechanisms responsible for and controlling the growth of tungsten nano-tendrils (or "fuzz") unde...
Helium retention is measured in tungsten samples exposed to mixed H/He plasma in the Magnum-PSI line...
Using the linear plasma device NAGDIS-II operating with gas mixtures of helium (He) and impurity (Ne...
To evaluate Helium (He) effect on hydrogen isotope retention in tungsten (W), He+ was introduced int...
The concentration of helium in tungsten fuzz-like nanostructures has been measured by means of therm...
Helium (He) concentrations in tungsten nano-tendrils (W fuzz) have been measured for the first time ...
AbstractTungsten samples are exposed to 3He plasma to quantify their helium retention behavior. The ...
Tungsten samples are exposed to 3He plasma to quantify their helium retention behavior. The retentio...
Recent experimental results on tungsten surface morphology, especially nano-structure (fuzz), induce...
In order to confirm the formation of a tungsten fiberform nanostructure (W-fuzz) by helium plasma ex...
The DIONISOS experiment is used to study the impact of RF helium (He) plasma on the surface morpholo...
From the helium (He) plasma irradiations to tungsten performed in the Magnum-PSI device, the effects...
Impact of crystal orientation on the surface morphology of the helium plasma exposed tungsten has be...
Experiments were performed in the Pilot-PSI linear plasma device to study the formation of helium-in...
Experiments were performed in the Pilot-PSI linear plasma device to study the formation of helium-in...
The mechanisms responsible for and controlling the growth of tungsten nano-tendrils (or "fuzz") unde...
Helium retention is measured in tungsten samples exposed to mixed H/He plasma in the Magnum-PSI line...
Using the linear plasma device NAGDIS-II operating with gas mixtures of helium (He) and impurity (Ne...
To evaluate Helium (He) effect on hydrogen isotope retention in tungsten (W), He+ was introduced int...