Monte Carlo cellular simulations are described for some simple surface evolution models. Surface growth is simulated by adding new cells to the surface. The bonding of a new cell arriving to a site on the surface depends on the number of cells present around that site; new cells are more likely to stick at sites with the fewest missing surrounding cells. Applications are given for simulating the propagation of a flame front and the formation of surface landforms; and the (anisotropic) growth of a crystal, where the surface may grow more rapidly in one direction than others
Abstract Background The development of cell pattern in the surface cell layer of the shoot apex can ...
Microstructural evolution in three dimensions of nucleation and growth transformations is simulated ...
We have carried out simulations using various methods on models of epitaxial growth. We have investi...
We propose an approach for modeling surface details such as scales, feathers, or thorns. These types...
We proposean approach for modeling surface details such as scales, feathers, or thorns. These types ...
The paper presents results from kinetic Monte Carlo simulations of kinetic surface roughening using ...
<p>Representative surfaces at the end of evolution with sticky cells (red) and non-sticky cells (blu...
In general, crystal growth proceeds by the addition of growth units at steps originating from disloc...
systems biology This report discusses the cross-section shapes and growth curves created by differen...
The results of Monte Carlo simulation of the growth of semiconductors on (OOl), (Ill), and (411) sur...
We examine the morphological evolution of growing surfaces using Monte Carlo simulations of a solid ...
A Monte Carlo model has been used to study surface growth in thin film epitaxy. The model accounts f...
International audienceThe cellular Potts model (CPM) is a cellular automaton (CA) for modelling morp...
Purpose: To analyze the capabilities of different classical mathematical models to describe the grow...
Most biological tissues grow by the synthesis of new material close to the tissue's interface, where...
Abstract Background The development of cell pattern in the surface cell layer of the shoot apex can ...
Microstructural evolution in three dimensions of nucleation and growth transformations is simulated ...
We have carried out simulations using various methods on models of epitaxial growth. We have investi...
We propose an approach for modeling surface details such as scales, feathers, or thorns. These types...
We proposean approach for modeling surface details such as scales, feathers, or thorns. These types ...
The paper presents results from kinetic Monte Carlo simulations of kinetic surface roughening using ...
<p>Representative surfaces at the end of evolution with sticky cells (red) and non-sticky cells (blu...
In general, crystal growth proceeds by the addition of growth units at steps originating from disloc...
systems biology This report discusses the cross-section shapes and growth curves created by differen...
The results of Monte Carlo simulation of the growth of semiconductors on (OOl), (Ill), and (411) sur...
We examine the morphological evolution of growing surfaces using Monte Carlo simulations of a solid ...
A Monte Carlo model has been used to study surface growth in thin film epitaxy. The model accounts f...
International audienceThe cellular Potts model (CPM) is a cellular automaton (CA) for modelling morp...
Purpose: To analyze the capabilities of different classical mathematical models to describe the grow...
Most biological tissues grow by the synthesis of new material close to the tissue's interface, where...
Abstract Background The development of cell pattern in the surface cell layer of the shoot apex can ...
Microstructural evolution in three dimensions of nucleation and growth transformations is simulated ...
We have carried out simulations using various methods on models of epitaxial growth. We have investi...