We present a novel methodology to compute relaxed dislocations core configurations, and their energies in crystalline metallic materials using large-scale ab-intio simulations. The approach is based on MacroDFT, a coarse-grained density functional theory method that accurately computes the electronic structure with sub-linear scaling resulting in a tremendous reduction in cost. Due to its implementation in real-space, MacroDFT has the ability to harness petascale resources to study materials and alloys through accurate ab-initio calculations. Thus, the proposed methodology can be used to investigate dislocation cores and other defects where long range elastic effects play an important role, such as in dislocation cores, grain boundaries and...
International audienceEquilibrium fluctuations of dislocations are central to the plastic response o...
Keynote TalkCurrent strategies of computational crystal plasticity that focus on individual atoms or...
Defects in materials play an important role in determining their behavior. Defects, such as vacancie...
We present a novel methodology to compute relaxed dislocations core configurations, and their energi...
AbstractIn the “materials-genome” (MG) approach which is currently being advocated in the United Sta...
DOI: 10.1103/PhysRevLett.102.055502International audienceAb initio calculations in bcc iron show tha...
International audienceThis chapter reviews the different methodological aspects of the ab ini-tio mo...
We introduce the density functional theory (DFT) local quasicontinuum method: a first principles mul...
Dislocations are fundamental crystallographic defects that play key roles in determining material pr...
The energy of complex dislocation microstructures is a fundamental property of continuum plasticity ...
The total energy of an atomistic dislocation includes contributions from the inelastic/large-distort...
International audienceDislocation cores, the regions in the immediate vicinity of dislocation lines,...
The first-principles prediction of dislocation nucleation in metallic systems subject to realistical...
We present an extension of the ‘learn on the fly’ method to the study of the motion of dislocations ...
This research uses an ab initio density functional theory (DFT) informed phase field dislocation dyn...
International audienceEquilibrium fluctuations of dislocations are central to the plastic response o...
Keynote TalkCurrent strategies of computational crystal plasticity that focus on individual atoms or...
Defects in materials play an important role in determining their behavior. Defects, such as vacancie...
We present a novel methodology to compute relaxed dislocations core configurations, and their energi...
AbstractIn the “materials-genome” (MG) approach which is currently being advocated in the United Sta...
DOI: 10.1103/PhysRevLett.102.055502International audienceAb initio calculations in bcc iron show tha...
International audienceThis chapter reviews the different methodological aspects of the ab ini-tio mo...
We introduce the density functional theory (DFT) local quasicontinuum method: a first principles mul...
Dislocations are fundamental crystallographic defects that play key roles in determining material pr...
The energy of complex dislocation microstructures is a fundamental property of continuum plasticity ...
The total energy of an atomistic dislocation includes contributions from the inelastic/large-distort...
International audienceDislocation cores, the regions in the immediate vicinity of dislocation lines,...
The first-principles prediction of dislocation nucleation in metallic systems subject to realistical...
We present an extension of the ‘learn on the fly’ method to the study of the motion of dislocations ...
This research uses an ab initio density functional theory (DFT) informed phase field dislocation dyn...
International audienceEquilibrium fluctuations of dislocations are central to the plastic response o...
Keynote TalkCurrent strategies of computational crystal plasticity that focus on individual atoms or...
Defects in materials play an important role in determining their behavior. Defects, such as vacancie...