International audienceAmong the phase change materials, Ge-rich GeSbTe (GST) alloys are of considerable interest as they offer a much higher thermal stability than their congruent contenders, a desirable characteristic for embedded digital memories and neuromorphic devices. Up to now, the mechanisms by which such alloys crystallize and progressively switch from one resistivity state to the other remained unclear and very controversial. Using in situ synchrotron X-ray diffraction during isothermal annealing and advanced transmission electron microscopy techniques, we solved this riddle and unveil the mechanisms leading to the overall crystallization of such alloys. During annealing at 310°C, the initially homogeneous and amorphous material u...
Phase change materials involve the rapid and reversible transition between nanoscale amorphous (a-) ...
International audienceAmong the phase change materials, Ge2Sb2Te5 (GST-225) is the most studied and ...
Crystallization of amorphous Ge[subscript 2]Sb[subscript 2]Te[subscript 5] (GST) has been studied us...
International audienceAmong the phase change materials, Ge-rich GeSbTe (GST) alloys are of considera...
International audienceGe-rich Ge–Sb–Te alloys are materials with potential for new non-volatile memo...
Chalcogenide GeSbTe (GST) alloys are exploited as phase change materials in a variety of application...
International audienceGe-rich GeSbTe alloys allowed overcoming temperature limitations of phase-chan...
Integration of the prototypical GeSbTe (GST) ternary alloys, especially on the GeTe-Sb2Te3 tie-line,...
International audienceThe material engineering of GeSbTe alloys has led to the significant improveme...
Enrichment of GeSbTe alloys with germanium has been proposed as a valid approach to increase the cry...
Phase-change optical memories are based on the astonishingly rapid nanosecond-scale crystallization ...
Phase change materials involve the rapid and reversible transition between nanoscale amorphous (a-) ...
International audienceAmong the phase change materials, Ge2Sb2Te5 (GST-225) is the most studied and ...
Crystallization of amorphous Ge[subscript 2]Sb[subscript 2]Te[subscript 5] (GST) has been studied us...
International audienceAmong the phase change materials, Ge-rich GeSbTe (GST) alloys are of considera...
International audienceGe-rich Ge–Sb–Te alloys are materials with potential for new non-volatile memo...
Chalcogenide GeSbTe (GST) alloys are exploited as phase change materials in a variety of application...
International audienceGe-rich GeSbTe alloys allowed overcoming temperature limitations of phase-chan...
Integration of the prototypical GeSbTe (GST) ternary alloys, especially on the GeTe-Sb2Te3 tie-line,...
International audienceThe material engineering of GeSbTe alloys has led to the significant improveme...
Enrichment of GeSbTe alloys with germanium has been proposed as a valid approach to increase the cry...
Phase-change optical memories are based on the astonishingly rapid nanosecond-scale crystallization ...
Phase change materials involve the rapid and reversible transition between nanoscale amorphous (a-) ...
International audienceAmong the phase change materials, Ge2Sb2Te5 (GST-225) is the most studied and ...
Crystallization of amorphous Ge[subscript 2]Sb[subscript 2]Te[subscript 5] (GST) has been studied us...