In spite of remarkable developments in the field of advanced materials, silicon remains one of the foremost semiconductors of the day. Of enduring relevance to science and technology is silicon's nanomechanical behaviour including phase transformation, amorphization and dislocations generation, particularly in the context of molecular dynamics and materials research. So far, comprehensive modelling of the whole cycle of events in silicon during nanoscale deformation has not been possible, however, due to the limitations inherent in the existing interatomic potentials. This paper examines how well an unconventional combination of two well-known potentials -the Tersoff and Stillinger-Weber -can perform in simulating that complexity. Our model...
In this paper, phase transformations (PTs) in silicon were investigated through molecular dynamics (...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
International audienceMolecular dynamics (MD) simulations of silicon nanowires (NW) tensile deformat...
Funding Information: This research was assisted by the Academy of Finland - Research Platform OMA fo...
Abstract. This paper discusses the phase transformation of diamond cubic silicon under nano-indentat...
Nanoindentation into single-crystalline Si is modeled by molecular dynamics simulation using a modif...
Nanoindentation into single-crystalline Si is modeled by molecular dynamics simulation using a modif...
Abstract This work presents the molecular dynamics approach toward mechanical deformation and phase ...
Abstract This work presents the molecular dynamics approach toward mechanical deformation and phase ...
AbstractThis work presents the molecular dynamics approach toward mechanical deformation and phase t...
University of Minnesota Ph.D. dissertation. May 2011. Major: Material Science and Engineering. Advis...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
Molecular dynamics simulations of the seeded solidification of silicon along <100>, <110>...
The nucleation and propagation of dislocations and its consequence on the defect structure in silico...
The nucleation and propagation of dislocations and its consequence on the defect structure in silico...
In this paper, phase transformations (PTs) in silicon were investigated through molecular dynamics (...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
International audienceMolecular dynamics (MD) simulations of silicon nanowires (NW) tensile deformat...
Funding Information: This research was assisted by the Academy of Finland - Research Platform OMA fo...
Abstract. This paper discusses the phase transformation of diamond cubic silicon under nano-indentat...
Nanoindentation into single-crystalline Si is modeled by molecular dynamics simulation using a modif...
Nanoindentation into single-crystalline Si is modeled by molecular dynamics simulation using a modif...
Abstract This work presents the molecular dynamics approach toward mechanical deformation and phase ...
Abstract This work presents the molecular dynamics approach toward mechanical deformation and phase ...
AbstractThis work presents the molecular dynamics approach toward mechanical deformation and phase t...
University of Minnesota Ph.D. dissertation. May 2011. Major: Material Science and Engineering. Advis...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
Molecular dynamics simulations of the seeded solidification of silicon along <100>, <110>...
The nucleation and propagation of dislocations and its consequence on the defect structure in silico...
The nucleation and propagation of dislocations and its consequence on the defect structure in silico...
In this paper, phase transformations (PTs) in silicon were investigated through molecular dynamics (...
This paper presents novel advances in the deformation behaviour of polycrystalline and single crysta...
International audienceMolecular dynamics (MD) simulations of silicon nanowires (NW) tensile deformat...