We introduce a simulation algorithm which allows the off-lattice simulation of various phenomena observed in heteroepitaxial growth like a critical layer thickness for the appearance of misfit dislocations, or self-assembled island formation in 1 + 1 dimensions. The only parameters of the model are deposition flux, simulation temperature and an interaction potential between the particles of the system
A novel multilattice kinetic Monte Carlo algorithm is developed for heteroepitactical growth of a he...
2009-2010 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
An efficient method for the simulation of strained heteroepitaxial growth with intermixing using kin...
We introduce a simulation algorithm which allows the off-lattice simulation of various phenomena obs...
We determine the critical layer thickness for the appearance of misfit dislocations as a function of...
We introduce an algorithm for off-lattice kinetic Monte Carlo simulations of heteroepitaxial crystal...
We determine the critical layer thickness for the appearance of misfit dislocations as a function ...
We investigate strained heteroepitaxial crystal growth in the framework of a simplifying (1+1)-dimen...
Abstract. We present an approximate off-lattice kinetic Monte Carlo (KMC) method for sim-ulating het...
A brief introduction is given to Kinetic Monte Carlo (KMC) simulations of epitaxial crystal growth. ...
A novel multilattice kinetic Monte Carlo algorithm is developed for heteroepitactical growth of a he...
2009-2010 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
An efficient method for the simulation of strained heteroepitaxial growth with intermixing using kin...
We introduce a simulation algorithm which allows the off-lattice simulation of various phenomena obs...
We determine the critical layer thickness for the appearance of misfit dislocations as a function of...
We introduce an algorithm for off-lattice kinetic Monte Carlo simulations of heteroepitaxial crystal...
We determine the critical layer thickness for the appearance of misfit dislocations as a function ...
We investigate strained heteroepitaxial crystal growth in the framework of a simplifying (1+1)-dimen...
Abstract. We present an approximate off-lattice kinetic Monte Carlo (KMC) method for sim-ulating het...
A brief introduction is given to Kinetic Monte Carlo (KMC) simulations of epitaxial crystal growth. ...
A novel multilattice kinetic Monte Carlo algorithm is developed for heteroepitactical growth of a he...
2009-2010 > Academic research: refereed > Publication in refereed journalVersion of RecordPublishe
An efficient method for the simulation of strained heteroepitaxial growth with intermixing using kin...