This is the final version of the article. Available from AIP Publishing via the DOI in this record.The crystallization dynamics in the phase-change material Ge2Sb2Te5 is modelled using the more detailed Master equation method over a wide range of heating rates commensurate with published ultrafast calorimetry experiments. Through the attachment and detachment of monomers, the Master rate equation naturally traces nucleation and growth of crystallites with temperature history to calculate the transient distribution of cluster sizes in the material. Both the attachment and detachment rates in this theory are strong functions of viscosity, and thus, the value of viscosity and its dependence on temperature significantly affect the crystallizati...
The present study reports the assessment of activation energy for crystallization and crystallizatio...
Copyright © 2012 American Institute of PhysicsThe phase transition between the amorphous and crystal...
The study of crystal growth in phase-change thin films is of crucial importance to improve our under...
Phase-change materials are widely used in non-volatile computer memories, and in arithmetic and logi...
Differential scanning calorimetry (DSC) is widely used to study the stability of amorphous solids, c...
The crystallization kinetics of phase-change materials (PCMs) entails a crucial aspect of phase-chan...
The crystallization kinetics of phase-change materials (PCMs) entails a crucial aspect of phase-chan...
Controlling crystallization kinetics is key to overcome the temperature–time dilemma in phase change...
After a general definition of phase change materials and a description of their defining properties,...
A comprehensive analysis on crystal growth and viscosity is presented for the Ge2Sb2Se5-xTex (x = 0....
Copyright © 2008 American Institute of Physics. This article may be downloaded for personal use only...
Phase-change materials exhibit fast and reversible transitions between an amorphous and a crystallin...
Phase-Change Materials belong to a special material class and can be switched rapidly between the no...
Crystallization kinetics of phase change materials (PCMs) at high temperatures is of key importance ...
Although nanostructured phase-change materials (PCMs) are considered as the building blocks of next-...
The present study reports the assessment of activation energy for crystallization and crystallizatio...
Copyright © 2012 American Institute of PhysicsThe phase transition between the amorphous and crystal...
The study of crystal growth in phase-change thin films is of crucial importance to improve our under...
Phase-change materials are widely used in non-volatile computer memories, and in arithmetic and logi...
Differential scanning calorimetry (DSC) is widely used to study the stability of amorphous solids, c...
The crystallization kinetics of phase-change materials (PCMs) entails a crucial aspect of phase-chan...
The crystallization kinetics of phase-change materials (PCMs) entails a crucial aspect of phase-chan...
Controlling crystallization kinetics is key to overcome the temperature–time dilemma in phase change...
After a general definition of phase change materials and a description of their defining properties,...
A comprehensive analysis on crystal growth and viscosity is presented for the Ge2Sb2Se5-xTex (x = 0....
Copyright © 2008 American Institute of Physics. This article may be downloaded for personal use only...
Phase-change materials exhibit fast and reversible transitions between an amorphous and a crystallin...
Phase-Change Materials belong to a special material class and can be switched rapidly between the no...
Crystallization kinetics of phase change materials (PCMs) at high temperatures is of key importance ...
Although nanostructured phase-change materials (PCMs) are considered as the building blocks of next-...
The present study reports the assessment of activation energy for crystallization and crystallizatio...
Copyright © 2012 American Institute of PhysicsThe phase transition between the amorphous and crystal...
The study of crystal growth in phase-change thin films is of crucial importance to improve our under...