Atomic collision processes are fundamental to numerous advanced materials technologies such as electron microscopy, semiconductor processing and nuclear power generation. Extensive experimental and computer simulation studies over the past several decades provide the physical basis for understanding the atomic-scale processes occurring during primary displacement events. The current international standard for quantifying this energetic particle damage, the Norgett-Robinson-Torrens displacements per atom (NRT-dpa) model, has nowadays several well-known limitations. In particular, the number of radiation defects produced in energetic cascades in metals is only similar to 1/3 the NRT-dpa prediction, while the number of atoms involved in atomic...
Nuclear interactions can be the source of atomic displacement and post-short-term cascade annealing ...
Because the irradiation damage is a major challenge of nuclear materials, it is of upmost importance...
Bombardment of crystalline solids by energetic particles produces lattice defects, the accumulation ...
Atomic collision processes are fundamental to numerous advanced materials technologies such as elect...
Atomic collision processes are fundamental to numerous advanced materials technologies such as elect...
International audienceAtomic collision processes are fundamental to numerous advanced materialstechn...
Scientific understanding of any kind of radiation effects starts from the primary damage, i.e. the d...
Atomic displacement is one of the key factors that influence the behaviors of material properties du...
The Displacement per Atom (DPA) is an important factor used to quantify the irradiation damage of ma...
This study investigates radiation damage in three metals in the low temperature and high radiant flu...
ABSTRACT : The knowledge of the defect and impurity generation rates, as well as the defect spatial ...
Displacement cross-sections for an advanced assessment of radiation damage rates were obtained for a...
Nuclear interactions can be the source of atomic displacement and post-short-term cascade annealing ...
Because the irradiation damage is a major challenge of nuclear materials, it is of upmost importance...
Bombardment of crystalline solids by energetic particles produces lattice defects, the accumulation ...
Atomic collision processes are fundamental to numerous advanced materials technologies such as elect...
Atomic collision processes are fundamental to numerous advanced materials technologies such as elect...
International audienceAtomic collision processes are fundamental to numerous advanced materialstechn...
Scientific understanding of any kind of radiation effects starts from the primary damage, i.e. the d...
Atomic displacement is one of the key factors that influence the behaviors of material properties du...
The Displacement per Atom (DPA) is an important factor used to quantify the irradiation damage of ma...
This study investigates radiation damage in three metals in the low temperature and high radiant flu...
ABSTRACT : The knowledge of the defect and impurity generation rates, as well as the defect spatial ...
Displacement cross-sections for an advanced assessment of radiation damage rates were obtained for a...
Nuclear interactions can be the source of atomic displacement and post-short-term cascade annealing ...
Because the irradiation damage is a major challenge of nuclear materials, it is of upmost importance...
Bombardment of crystalline solids by energetic particles produces lattice defects, the accumulation ...