The radiation hardness of amorphous Ge2Sb2Te5 phase-change random-access memory material has been elucidated by ab initio molecular-dynamics simulations. Ionizing radiation events have been modeled to investigate their effect on the atomic and electronic structure of the glass. Investigation of the short- and medium-range order highlights a structural recovery of the amorphous network after exposure to the high-energy events modeled in this study. Analysis of the modeled glasses reveals specific structural rearrangements in the local atomic geometry of the glass, as well as an increase in the formation of large shortest-path rings. The electronic structure of the modeled system is not significantly affected by the ionizing radiation events,...
International audienceMolecular dynamics simulations of the ballistic effects arising from displacem...
Ge2Sb2Te5 (GST) has been widely used in phase-change random-access memory (PcRAM) owing to its high-...
Phase change materials involve the rapid and reversible transition between nanoscale amorphous (a-) ...
The radiation hardness of amorphous Ge2Sb2Te5 phase-change random-access memory material has been el...
Ion irradiation corresponds to a process that involves the production of non-equilibrium cascades in...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
We use molecular-dynamics simulations to study processes related to resistance to amorphization by r...
The archival life of phase-change memories (PCM) is determined by the thermal stability of amorphous...
Laser-induced crystalline-amorphous phase change of Ge-Sb-Te alloys is the key mechanism enabling th...
PhaseChange Materials should be stable enough in their amorphous phase to achieve a durable data ret...
The development of the generation IV reactors calls for radiation resistant materials. This thesis p...
An analysis of thermal transients from non-equilibrium ab initio molecular-dynamics simulations can ...
One of the key reasons why nanoscale materials behave differently from their bulk counterparts is th...
International audienceAssessing the long-term behavior of nuclear glass implies the prediction of th...
Reduction of programming current is a major research goal in the development of phase-change random-...
International audienceMolecular dynamics simulations of the ballistic effects arising from displacem...
Ge2Sb2Te5 (GST) has been widely used in phase-change random-access memory (PcRAM) owing to its high-...
Phase change materials involve the rapid and reversible transition between nanoscale amorphous (a-) ...
The radiation hardness of amorphous Ge2Sb2Te5 phase-change random-access memory material has been el...
Ion irradiation corresponds to a process that involves the production of non-equilibrium cascades in...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
We use molecular-dynamics simulations to study processes related to resistance to amorphization by r...
The archival life of phase-change memories (PCM) is determined by the thermal stability of amorphous...
Laser-induced crystalline-amorphous phase change of Ge-Sb-Te alloys is the key mechanism enabling th...
PhaseChange Materials should be stable enough in their amorphous phase to achieve a durable data ret...
The development of the generation IV reactors calls for radiation resistant materials. This thesis p...
An analysis of thermal transients from non-equilibrium ab initio molecular-dynamics simulations can ...
One of the key reasons why nanoscale materials behave differently from their bulk counterparts is th...
International audienceAssessing the long-term behavior of nuclear glass implies the prediction of th...
Reduction of programming current is a major research goal in the development of phase-change random-...
International audienceMolecular dynamics simulations of the ballistic effects arising from displacem...
Ge2Sb2Te5 (GST) has been widely used in phase-change random-access memory (PcRAM) owing to its high-...
Phase change materials involve the rapid and reversible transition between nanoscale amorphous (a-) ...