We propose a simple and versatile model to understand the deviations from the well-known Kolmogorov-Johnson-Mehl-Avrami kinetics theory found in metal recrystallization and amorphous semiconductor crystallization. We analyze the kinetics of the transformation and the grain-size distribution of the product material, finding a good overall agreement between our model and available experimental data. The information so obtained could help to relate the mentioned experimental deviations due to preexisting anisotropy along some regions, to a certain degree of crystallinity of the amorphous phases during deposition, or more generally, to impurities or roughness of the substrate
The non-isothermal kinetics of primary crystallization processes is studied from numerically generat...
Calorimetric data of primary crystallization is usually interpreted in the framework of the Kolmogor...
International audienceIn the present paper we review different aspects of the crystallization of amo...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
Starting from the wrong derivation by Erukhimovitch and Baram of an equation alternative to the clas...
The crystallization proceeds by the advance of the crystal faces into the disordered phase at the ex...
The crystallization enthalpy measured in a large series of amorphous silicon (a-Si) materials varie...
A simple numerical model which calculates the kinetics of crystallization involving randomly distrib...
A realistic computer model for polymorphic crystallization (i.e., initial and final phases with iden...
In this work, we propose a model for using the classical Johnson-Mehl-Avrami-Kolmogorov (JMAK) cryst...
The non-isothermal kinetics of primary crystallization processes is studied from numerically generat...
The non-isothermal kinetics of primary crystallization processes is studied from numerically generat...
Calorimetric data of primary crystallization is usually interpreted in the framework of the Kolmogor...
International audienceIn the present paper we review different aspects of the crystallization of amo...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
We propose a simple, versatile, and fast computational model to understand the deviations from the w...
Starting from the wrong derivation by Erukhimovitch and Baram of an equation alternative to the clas...
The crystallization proceeds by the advance of the crystal faces into the disordered phase at the ex...
The crystallization enthalpy measured in a large series of amorphous silicon (a-Si) materials varie...
A simple numerical model which calculates the kinetics of crystallization involving randomly distrib...
A realistic computer model for polymorphic crystallization (i.e., initial and final phases with iden...
In this work, we propose a model for using the classical Johnson-Mehl-Avrami-Kolmogorov (JMAK) cryst...
The non-isothermal kinetics of primary crystallization processes is studied from numerically generat...
The non-isothermal kinetics of primary crystallization processes is studied from numerically generat...
Calorimetric data of primary crystallization is usually interpreted in the framework of the Kolmogor...
International audienceIn the present paper we review different aspects of the crystallization of amo...