We use our recently proposed accelerated dynamics algorithm (Tiwary and van de Walle, 2011) to calculate temperature and stress dependence of activation free energy for surface nucleation of dislocations in pristine Gold nanopillars under realistic loads. While maintaining fully atomistic resolution, we achieve the fraction of a second time-scale regime. We find that the activation free energy depends significantly and non-linearly on the driving force (stress or strain) and temperature, leading to very high activation entropies. We also perform compression tests on Gold nanopillars for strain-rates varying between 7 orders of magnitudes, reaching as low as 10^3/s. Our calculations bring out the perils of high strain-rate Molecular Dynamics...
Nanostructures are emerging as novel materials with revolutionary application in electronics, nuclea...
The idea of dimensionality and size effect the strength of metallic specimen as their typical size i...
In this PhD thesis, we studied the nucleation of dislocations from a surface in a fcc metal under st...
We use our recently proposed accelerated dynamics algorithm (Tiwary and van de Walle, 2011) to calcu...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
The deformation and failure phenomena of materials are the results of stress-driven, thermally activ...
Dislocation nucleation is essential to the plastic deformation of small-volume crystalline solids. T...
The nature of dislocation sources in small-scale metals is critical to understanding and building mo...
The nanoindentation hardnesses and stacking fault energies (SFE) for pure and alloyed Au are determi...
Conventional molecular dynamics simulations enable the elucidation of an astonishing array of phenom...
Conventional molecular dynamics simulations enable the elucidation of an astonishing array of phenom...
Conventional molecular dynamics simulations enable the elucidation of an astonishing array of phenom...
Conventional molecular dynamics simulations enable the elucidation of an astonishing array of phenom...
Conventional molecular dynamics simulations enable the elucidation of an astonishing array of phenom...
Nanostructures are emerging as novel materials with revolutionary application in electronics, nuclea...
The idea of dimensionality and size effect the strength of metallic specimen as their typical size i...
In this PhD thesis, we studied the nucleation of dislocations from a surface in a fcc metal under st...
We use our recently proposed accelerated dynamics algorithm (Tiwary and van de Walle, 2011) to calcu...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
The strength of true metallic nanowires and nanopillars (diameters below 100 nm) is known to be high...
The deformation and failure phenomena of materials are the results of stress-driven, thermally activ...
Dislocation nucleation is essential to the plastic deformation of small-volume crystalline solids. T...
The nature of dislocation sources in small-scale metals is critical to understanding and building mo...
The nanoindentation hardnesses and stacking fault energies (SFE) for pure and alloyed Au are determi...
Conventional molecular dynamics simulations enable the elucidation of an astonishing array of phenom...
Conventional molecular dynamics simulations enable the elucidation of an astonishing array of phenom...
Conventional molecular dynamics simulations enable the elucidation of an astonishing array of phenom...
Conventional molecular dynamics simulations enable the elucidation of an astonishing array of phenom...
Conventional molecular dynamics simulations enable the elucidation of an astonishing array of phenom...
Nanostructures are emerging as novel materials with revolutionary application in electronics, nuclea...
The idea of dimensionality and size effect the strength of metallic specimen as their typical size i...
In this PhD thesis, we studied the nucleation of dislocations from a surface in a fcc metal under st...