The dynamics and mechanism of migration of a vacancy point defect in a two-dimensional (2D) colloidal crystal are studied using numerical simulations. We find that the migration of a vacancy is always realized by topology switching between its different configurations. From the temperature dependence of the topology switch frequencies, we obtain the activation energies for possible topology transitions associated with the vacancy diffusion in the 2D crystal. (C) 2011 American Institute of Physics. [doi:10.1063/1.3615287
The formation of dislocations, disclinations and their dynamics is central to our understanding of c...
The average time associated with the movement of a vacancy defect between two adjacent sites is esti...
The plastic flow of crystals takes place via the elementary flow of topological defects and is stron...
The dynamics and mechanism of migration of a vacancy point defect in a two-dimensional (2D) colloida...
In this paper we study a two-dimensional system of charged colloidal particles using Brownian dynami...
Graphical abstract: Vacancy string in a two-dimensional colloidal crystal. We study the effective in...
Abstract Vacancy dynamics of high‐density 2D colloidal crystals with a polydispersity in particle si...
Using computer simulations, we study the diffusion, interactions, and strain fields of point defects...
Colloids are microscopic particles whose size ranges from a nanometer to several micrometers, that a...
To locate the position and characterize the dynamics of a vacancy in a crystal, we propose to repres...
We investigated the evolution of topological defects in two-dimensional (2D) quenched colloidal syst...
In this paper we use computer simulations to examine point defects in systems of "soft"colloidal par...
In colloidal crystals of spheres, dislocation motion is unrestricted. On the other hand, recent stud...
re o dis the ing e c ten ied elas of e m vidual colloidal particles, Pertsinidis and Ling have gener...
The dynamics of grain boundaries in two-dimensional colloidal crystals is studied using optical micr...
The formation of dislocations, disclinations and their dynamics is central to our understanding of c...
The average time associated with the movement of a vacancy defect between two adjacent sites is esti...
The plastic flow of crystals takes place via the elementary flow of topological defects and is stron...
The dynamics and mechanism of migration of a vacancy point defect in a two-dimensional (2D) colloida...
In this paper we study a two-dimensional system of charged colloidal particles using Brownian dynami...
Graphical abstract: Vacancy string in a two-dimensional colloidal crystal. We study the effective in...
Abstract Vacancy dynamics of high‐density 2D colloidal crystals with a polydispersity in particle si...
Using computer simulations, we study the diffusion, interactions, and strain fields of point defects...
Colloids are microscopic particles whose size ranges from a nanometer to several micrometers, that a...
To locate the position and characterize the dynamics of a vacancy in a crystal, we propose to repres...
We investigated the evolution of topological defects in two-dimensional (2D) quenched colloidal syst...
In this paper we use computer simulations to examine point defects in systems of "soft"colloidal par...
In colloidal crystals of spheres, dislocation motion is unrestricted. On the other hand, recent stud...
re o dis the ing e c ten ied elas of e m vidual colloidal particles, Pertsinidis and Ling have gener...
The dynamics of grain boundaries in two-dimensional colloidal crystals is studied using optical micr...
The formation of dislocations, disclinations and their dynamics is central to our understanding of c...
The average time associated with the movement of a vacancy defect between two adjacent sites is esti...
The plastic flow of crystals takes place via the elementary flow of topological defects and is stron...