International audienceWe report the results of a two-dimensional reference model for the formation of facets on the left and the right side of a silicon monograin that is solidified by pulling a thin sample in a constant temperature gradient. Anisotropy functions of both the surface energy and the kinetic attachment coefficient are adapted from a recent model for free growth of silicon micrometer size grains [Boukellal et al., J. Cryst. Growth 522, 37 (2019)]. More precise estimates of the physical parameters entering these functions are obtained by reanalyzing available experimental results. We show that the reference model leads to a differential equation for the shape of the solid-liquid interface. The numerical solutions of this equatio...
Facetted growth of a multi crystalline material from the melt is investigated using a Multi-Phase-Fi...
Two-dimensional (2D) transient numerical simulations are performed to investigate the evolution of t...
We have developed mathematical models in both one and two spatial dimensions for the solidification ...
We combine the analysis of experiments based on in situ X-ray imaging and phase-field simulations to...
This work simulates the morphological evolution process of the solidification interface of silicon c...
In order to control the grain structure of multi-crystalline (mc) silicon during directional solidif...
We present an atomistically informed parametrization of a phase-field model for describing the aniso...
We present an atomistically informed parametrization of a phase-field model for describing the aniso...
International audienceDirectional solidification from mono-crystalline Si seeds having different ori...
A regularization of the surface tension anisotropic function used in vapor-liquid-solid nanowire gro...
Silicon facet formation during directional solidification is simulated by cellular automaton (CA) mo...
A modeling approach combining the lattice Boltzmann (LB) method and the cellular automaton (CA) tech...
International audienceWe present a cellular automata model for computing the grain evolution during ...
The Directional Solidification is a very important technique for growing high quality multicrystalli...
Many important intermetallic compounds display a faceted morphology during solidification close to e...
Facetted growth of a multi crystalline material from the melt is investigated using a Multi-Phase-Fi...
Two-dimensional (2D) transient numerical simulations are performed to investigate the evolution of t...
We have developed mathematical models in both one and two spatial dimensions for the solidification ...
We combine the analysis of experiments based on in situ X-ray imaging and phase-field simulations to...
This work simulates the morphological evolution process of the solidification interface of silicon c...
In order to control the grain structure of multi-crystalline (mc) silicon during directional solidif...
We present an atomistically informed parametrization of a phase-field model for describing the aniso...
We present an atomistically informed parametrization of a phase-field model for describing the aniso...
International audienceDirectional solidification from mono-crystalline Si seeds having different ori...
A regularization of the surface tension anisotropic function used in vapor-liquid-solid nanowire gro...
Silicon facet formation during directional solidification is simulated by cellular automaton (CA) mo...
A modeling approach combining the lattice Boltzmann (LB) method and the cellular automaton (CA) tech...
International audienceWe present a cellular automata model for computing the grain evolution during ...
The Directional Solidification is a very important technique for growing high quality multicrystalli...
Many important intermetallic compounds display a faceted morphology during solidification close to e...
Facetted growth of a multi crystalline material from the melt is investigated using a Multi-Phase-Fi...
Two-dimensional (2D) transient numerical simulations are performed to investigate the evolution of t...
We have developed mathematical models in both one and two spatial dimensions for the solidification ...