It has been long hypothesized that the structure of a material bombarded by energetic particles might approach a certain asymptotic steady state in the limit of high exposure to irradiation. There is still no definitive verdict regarding the validity of this hypothesis or the conditions where it applies. To clarify this, we explore a highly simplified model for microstructural evolution that retains full atomic detail of the underlying crystal structure and involves random events of generation and relaxation of defects. We explore the dynamics of evolution of the model in the limit T = 0, where the defect and dislocation microstructure is driven purely by the spatially fluctuating stress field accumulating as a result of stochastic generati...
Radiation-induced embrittlement of reactor pressure vessel (RPV) steels can potentially limit the op...
The overall purpose of this dissertation is to develop a multi-scale framework that can simulate rad...
Most materials are heterogeneous and aperiodic at micro and nanoscales; the properties, interaction ...
The formation and evolution of defect microstructures in irradiated materials is analysed in the fra...
Combining spatially resolved x-ray Laue diffraction with atomic-scale simulations, we observe how io...
This paper is the first of three that overview the main mechanisms that drive the microstructure evo...
The energetics and kinetics of interactions between microstructural point, line, and planar defects ...
Irradiation induces a high concentration of defects in the structural materials of nuclear reactors,...
The ability to predict the behavior of structural components in a nuclear power plant is critical to...
International audienceThis paper is the first of three that overview the main mechanisms that drive ...
The mechanical properties of materials are often degraded over time by exposure to irradiation envir...
Irradiation damage accumulation in metals is studied via a dynamical description of the evolution of...
Metals and alloys under irradiation with energetic particles such as electrons, neutrons, or ions ar...
The lifetime and properties of materials operating under extreme conditions are determined by comple...
The sizes of defect clusters, produced in materials by energetic ion or neutron impacts, are critica...
Radiation-induced embrittlement of reactor pressure vessel (RPV) steels can potentially limit the op...
The overall purpose of this dissertation is to develop a multi-scale framework that can simulate rad...
Most materials are heterogeneous and aperiodic at micro and nanoscales; the properties, interaction ...
The formation and evolution of defect microstructures in irradiated materials is analysed in the fra...
Combining spatially resolved x-ray Laue diffraction with atomic-scale simulations, we observe how io...
This paper is the first of three that overview the main mechanisms that drive the microstructure evo...
The energetics and kinetics of interactions between microstructural point, line, and planar defects ...
Irradiation induces a high concentration of defects in the structural materials of nuclear reactors,...
The ability to predict the behavior of structural components in a nuclear power plant is critical to...
International audienceThis paper is the first of three that overview the main mechanisms that drive ...
The mechanical properties of materials are often degraded over time by exposure to irradiation envir...
Irradiation damage accumulation in metals is studied via a dynamical description of the evolution of...
Metals and alloys under irradiation with energetic particles such as electrons, neutrons, or ions ar...
The lifetime and properties of materials operating under extreme conditions are determined by comple...
The sizes of defect clusters, produced in materials by energetic ion or neutron impacts, are critica...
Radiation-induced embrittlement of reactor pressure vessel (RPV) steels can potentially limit the op...
The overall purpose of this dissertation is to develop a multi-scale framework that can simulate rad...
Most materials are heterogeneous and aperiodic at micro and nanoscales; the properties, interaction ...