International audienceBeryllium will be one of the plasma-facing materials for ITER. It will have to sustain high fluxes of hydrogen isotopes and as a consequence significant amounts of tritium can be retained in the wall. For safety and operational reasons, the deuterium and tritium inventory in the vacuum vessel must be limited. As a consequence, hydrogen diffusion, trapping and solubility are of vital importance in assessing and modeling the plasma fuel retention into the wall. In order to understand these issues, point defects and the behavior of hydrogen in beryllium are investigated based on Density Functional Theory calculations. Although some data have already been acquired in the past, some of them disagree, which motivates further...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
Molecular dynamics simulations are used to investigate the behaviour of D atoms at two interfaces be...
A reaction-diffusion model with surface occupation dependent desorption [D. Matveev et al., Nucl. In...
International audienceBeryllium will be one of the plasma-facing materials for ITER. It will have to...
Beryllium will be the first wall material for the international fusion reactor ITER. Due to the heav...
International audienceIn the quest of new renewable sources of energy, hydrogen is a promising candi...
International audienceThis work revisits hydrogen insertion in the wurtzite beryllium oxide in order...
International audienceThe behavior of hydrogen in perfect wurtzite beryllium oxide is herein investi...
The valence band density of states of bulk beryllium nitride (alpha-Be3N2) and the solvation energy ...
The paper presents the results of ab initio simulation of hydrogen properties in beryllium. Both int...
A model based on a reaction-diffusion approach is used to simulate thermal desorption experiments pe...
Beryllium is proposed to be a neutron multiplier and plasma facing material in future fusion devices...
Beryllium will be used as a plasma-facing material for ITER and will retain radioactive tritium fuel...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
Molecular dynamics simulations are used to investigate the behaviour of D atoms at two interfaces be...
A reaction-diffusion model with surface occupation dependent desorption [D. Matveev et al., Nucl. In...
International audienceBeryllium will be one of the plasma-facing materials for ITER. It will have to...
Beryllium will be the first wall material for the international fusion reactor ITER. Due to the heav...
International audienceIn the quest of new renewable sources of energy, hydrogen is a promising candi...
International audienceThis work revisits hydrogen insertion in the wurtzite beryllium oxide in order...
International audienceThe behavior of hydrogen in perfect wurtzite beryllium oxide is herein investi...
The valence band density of states of bulk beryllium nitride (alpha-Be3N2) and the solvation energy ...
The paper presents the results of ab initio simulation of hydrogen properties in beryllium. Both int...
A model based on a reaction-diffusion approach is used to simulate thermal desorption experiments pe...
Beryllium is proposed to be a neutron multiplier and plasma facing material in future fusion devices...
Beryllium will be used as a plasma-facing material for ITER and will retain radioactive tritium fuel...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
Molecular dynamics simulations are used to investigate the behaviour of D atoms at two interfaces be...
A reaction-diffusion model with surface occupation dependent desorption [D. Matveev et al., Nucl. In...