The use of patterned stress fields to direct phase separation in thin film alloys is investigated computationally with Monte Carlo simulations in which atomic interactions are represented by a Lennard-Jones potential. We show that careful design of annealing schedules based on consideration of the system phase diagram can lead to vastly enhanced patterning kinetics. In particular, by avoiding the low temperature formation of highly stable nuclei within the entire system, the kinetics of patterning are accelerated by rapid monomerdiffusion, rather than classical Ostwald ripening in which small precipitates must dissolve to feed larger ones
We review recent extensions of the kinetic Ising model used to investigate phase separation in binar...
Equilibrium atomic configurations and the kinetics of "order-order" and surface segregation processe...
Ordering in a binary alloy is studied by means of a molecular-dynamics (MD) algorithm which allows t...
The use of patterned stress fields to direct phase separation in thin film alloys is investigated co...
The patterned compositional evolution in thin films of a binary alloy controlled by modulated stress...
Copyright 1993 American Institute of Physics. This article may be downloaded for personal use only. ...
Two theoretical studies of phase transitions are presented in this thesis. The first topic explores ...
A new computational method is introduced to investigate the stresses developed in the island-coalesc...
In this Letter we report Ising model simulations of the growth of alloys which predict quite differe...
During the evaporative deposition of polycrystalline thin films, the development of a tensile stress...
A Monte Carlo (MC) simulation technique which is well suited for studying diffusional phase transfor...
We use molecular dynamics (MD) to simulate an unstable homogeneous mixture of binary fluids (AB), co...
In this paper the evolution of a binary mixture in a thin-film geometry with a wall at the top and b...
We have used a novel Monte Carlo (MC) scheme for studying diffusional phase transformations. The all...
A detailed computational study of compositional segregation during growth of colloidal binary solid-...
We review recent extensions of the kinetic Ising model used to investigate phase separation in binar...
Equilibrium atomic configurations and the kinetics of "order-order" and surface segregation processe...
Ordering in a binary alloy is studied by means of a molecular-dynamics (MD) algorithm which allows t...
The use of patterned stress fields to direct phase separation in thin film alloys is investigated co...
The patterned compositional evolution in thin films of a binary alloy controlled by modulated stress...
Copyright 1993 American Institute of Physics. This article may be downloaded for personal use only. ...
Two theoretical studies of phase transitions are presented in this thesis. The first topic explores ...
A new computational method is introduced to investigate the stresses developed in the island-coalesc...
In this Letter we report Ising model simulations of the growth of alloys which predict quite differe...
During the evaporative deposition of polycrystalline thin films, the development of a tensile stress...
A Monte Carlo (MC) simulation technique which is well suited for studying diffusional phase transfor...
We use molecular dynamics (MD) to simulate an unstable homogeneous mixture of binary fluids (AB), co...
In this paper the evolution of a binary mixture in a thin-film geometry with a wall at the top and b...
We have used a novel Monte Carlo (MC) scheme for studying diffusional phase transformations. The all...
A detailed computational study of compositional segregation during growth of colloidal binary solid-...
We review recent extensions of the kinetic Ising model used to investigate phase separation in binar...
Equilibrium atomic configurations and the kinetics of "order-order" and surface segregation processe...
Ordering in a binary alloy is studied by means of a molecular-dynamics (MD) algorithm which allows t...