<p>We perform atomistic simulations of dislocation nucleation in defect free crystals in 2 and 3 dimensions during indentation with circular (2D) or spherical (3D) indenters. The kinematic structure of the theory of Field Dislocation Mechanics (FDM) is shown to allow the identification of a local feature of the atomistic velocity field in these simulations as indicative of dislocation nucleation. It predicts the precise location of the incipient spatially distributed dislocation field, as shown for the cases of the Embedded Atom Method potential for Al and the Lennard–Jones pair potential. We demonstrate the accuracy of this analysis for two crystallographic orientations in 2D and one in 3D. Apart from the accuracy in predicting the locatio...
Plastic deformation is thought to involve highly 'stochastic' phenomena, caused by the gen...
The phenomenon of 2D nanoindentation of circular "Brinell" indenter into a single crystal metal thin...
This study contributes to the development of a 'fundamental, atomistic basis' to inform ma...
We perform atomistic simulations of dislocation nucleation in defect free crystals in 2 and 3 dimens...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Using static atomistic simulations, we study the full details of the mechanism by which dislocations...
Atomistic simulations are performed for the study of defect nucleation and evolution in Al single cr...
The first-principles prediction of dislocation nucleation in metallic systems subject to realistical...
The first-principles prediction of dislocation nucleation in metallic systems subject to realistical...
We use the phase-field crystal model to study nucleation of edge dislocations in two dimensions unde...
We have performed a systematic molecular dynamics study of the competition between crack growth and ...
The first-principles prediction of dislocation nucleation in metallic systems subject to realistical...
We have performed a systematic molecular dynamics study of the competition between crack growth and ...
We use the phase-field crystal model to study nucleation of edge dislocations in two dimensions unde...
Plastic deformation is thought to involve highly 'stochastic' phenomena, caused by the gen...
The phenomenon of 2D nanoindentation of circular "Brinell" indenter into a single crystal metal thin...
This study contributes to the development of a 'fundamental, atomistic basis' to inform ma...
We perform atomistic simulations of dislocation nucleation in defect free crystals in 2 and 3 dimens...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Molecular dynamics analyses of defect-free aluminum single crystals subject to bending are carried o...
Using static atomistic simulations, we study the full details of the mechanism by which dislocations...
Atomistic simulations are performed for the study of defect nucleation and evolution in Al single cr...
The first-principles prediction of dislocation nucleation in metallic systems subject to realistical...
The first-principles prediction of dislocation nucleation in metallic systems subject to realistical...
We use the phase-field crystal model to study nucleation of edge dislocations in two dimensions unde...
We have performed a systematic molecular dynamics study of the competition between crack growth and ...
The first-principles prediction of dislocation nucleation in metallic systems subject to realistical...
We have performed a systematic molecular dynamics study of the competition between crack growth and ...
We use the phase-field crystal model to study nucleation of edge dislocations in two dimensions unde...
Plastic deformation is thought to involve highly 'stochastic' phenomena, caused by the gen...
The phenomenon of 2D nanoindentation of circular "Brinell" indenter into a single crystal metal thin...
This study contributes to the development of a 'fundamental, atomistic basis' to inform ma...