Phase change materials are of great interest as active layers in rewritable optical disks and novel electronic nonvolatile memories. These applications rest on a fast and reversible transformation between the amorphous and crystalline phases upon heating, taking place on the nanosecond time scale. In this work, we investigate the microscopic origin of the fast crystallization process by means of large-scale molecular dynamics simulations of the phase change compound GeTe. To this end, we use an interatomic potential generated from a Neural Network fitting of a large database of ab initio energies. We demonstrate that in the temperature range of the programming protocols of the electronic memories (500–700 K), nucleation of the crystal in th...
A methodology to study phase-change memory programming at atomistic level during SET and RESET opera...
The phase-change material, Ge2Sb2Te5, is the canonical material ingredient for next-generation stora...
Using molecular dynamics, we investigate the crystal nucleation in a Lennard-Jones fluid as a functi...
Phase change materials are of great interest as active layers in rewritable optical disks and novel ...
Thanks to their outstanding physical properties, phase-change materials (PCM) are considered as one ...
Crystallization kinetics of phase change materials (PCMs) at high temperatures is of key importance ...
We performed molecular dynamics simulations to study the crystallization of the P3Sn4 phase from P2S...
In phase-change memory devices, a material is cycled between glassy and crystalline states. The high...
We have simulated, by ab initio molecular dynamics (MD), the entire phase-change (PC) cycle in Ge-Sb...
Glass-forming materials are employed in information storage technologies making use of the transitio...
Glass-forming materials are employed in information storage technologies making use of the transitio...
Phase change memory devices are based on the rapid and reversible amorphous to crystalline transfor...
Phase-change materials (PCMs) have important applications in optical and electronic storage devices....
Despite its fundamental and technological importance, a microscopic understanding of the crystalliza...
Large scale Molecular Dynamics simulations of 65 systems with N = 80 000 Lennard–Jones particles at ...
A methodology to study phase-change memory programming at atomistic level during SET and RESET opera...
The phase-change material, Ge2Sb2Te5, is the canonical material ingredient for next-generation stora...
Using molecular dynamics, we investigate the crystal nucleation in a Lennard-Jones fluid as a functi...
Phase change materials are of great interest as active layers in rewritable optical disks and novel ...
Thanks to their outstanding physical properties, phase-change materials (PCM) are considered as one ...
Crystallization kinetics of phase change materials (PCMs) at high temperatures is of key importance ...
We performed molecular dynamics simulations to study the crystallization of the P3Sn4 phase from P2S...
In phase-change memory devices, a material is cycled between glassy and crystalline states. The high...
We have simulated, by ab initio molecular dynamics (MD), the entire phase-change (PC) cycle in Ge-Sb...
Glass-forming materials are employed in information storage technologies making use of the transitio...
Glass-forming materials are employed in information storage technologies making use of the transitio...
Phase change memory devices are based on the rapid and reversible amorphous to crystalline transfor...
Phase-change materials (PCMs) have important applications in optical and electronic storage devices....
Despite its fundamental and technological importance, a microscopic understanding of the crystalliza...
Large scale Molecular Dynamics simulations of 65 systems with N = 80 000 Lennard–Jones particles at ...
A methodology to study phase-change memory programming at atomistic level during SET and RESET opera...
The phase-change material, Ge2Sb2Te5, is the canonical material ingredient for next-generation stora...
Using molecular dynamics, we investigate the crystal nucleation in a Lennard-Jones fluid as a functi...