AbstractBeryllium is proposed to be a neutron multiplier and plasma facing material in future fusion devices. Therefore, it is crucial to acquire an understanding of the microscopic mechanisms of tritium accumulation and release as a result of transmutation processes that Be undergoes under neutron irradiation. A multiscale simulation of ad- and desorption of hydrogen isotopes on the beryllium (0001) surface is developed. It consists of ab initio calculations of certain H adsorption configurations, a suitable cluster expansion approximating the energies of arbitrary configurations, and a kinetic Monte Carlo method for dynamic simulations of adsorption and desorption. The processes implemented in the kinetic Monte Carlo simulation are deduce...
Beryllium intermetallic compounds (beryllides) are the most promising candidate materials for use as...
Beryllium intermetallic compounds (beryllides) are the most promising candidate materials for use as...
The paper presents the results of ab initio simulation of hydrogen properties in beryllium. Both int...
Beryllium is proposed to be a neutron multiplier and plasma facing material in future fusion devices...
AbstractBeryllium is proposed to be a neutron multiplier and plasma facing material in future fusion...
Beryllium is proposed to be a neutron multiplier and plasma facing material in future fusion devices...
AbstractBeryllium intermetallic compounds (beryllides) are the most promising candidate materials fo...
A reaction-diffusion model with surface occupation dependent desorption [D. Matveev et al., Nucl. In...
Beryllium will be the first wall material for the international fusion reactor ITER. Due to the heav...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
International audienceIn the quest of new renewable sources of energy, hydrogen is a promising candi...
International audienceIn the quest of new renewable sources of energy, hydrogen is a promising candi...
AbstractBeryllium intermetallic compounds (beryllides) are the most promising candidate materials fo...
Beryllium intermetallic compounds (beryllides) are the most promising candidate materials for use as...
Beryllium intermetallic compounds (beryllides) are the most promising candidate materials for use as...
The paper presents the results of ab initio simulation of hydrogen properties in beryllium. Both int...
Beryllium is proposed to be a neutron multiplier and plasma facing material in future fusion devices...
AbstractBeryllium is proposed to be a neutron multiplier and plasma facing material in future fusion...
Beryllium is proposed to be a neutron multiplier and plasma facing material in future fusion devices...
AbstractBeryllium intermetallic compounds (beryllides) are the most promising candidate materials fo...
A reaction-diffusion model with surface occupation dependent desorption [D. Matveev et al., Nucl. In...
Beryllium will be the first wall material for the international fusion reactor ITER. Due to the heav...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
ITER will use beryllium as a plasma-facing material in the main chamber, covering a total surface ar...
International audienceIn the quest of new renewable sources of energy, hydrogen is a promising candi...
International audienceIn the quest of new renewable sources of energy, hydrogen is a promising candi...
AbstractBeryllium intermetallic compounds (beryllides) are the most promising candidate materials fo...
Beryllium intermetallic compounds (beryllides) are the most promising candidate materials for use as...
Beryllium intermetallic compounds (beryllides) are the most promising candidate materials for use as...
The paper presents the results of ab initio simulation of hydrogen properties in beryllium. Both int...