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Atomistic origins of the phase transition mechanism in Ge2Sb2Te5

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arxiv 0903.2456 v1 pith:WFLXOG2V submitted 2009-03-13 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords ge2sb2te5intrinsicphaseprovidedsitestetrahedrontransitionachieved
verification ladder T0 review T1 audit T2 compute T3 formal
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Combined static and molecular dynamics first-principles calculations are used to identify a direct structural link between the metastable crystalline and amorphous phases of Ge2Sb2Te5. We find that the phase transition is driven by the displacement of Ge atoms along the rocksalt [111] direction from the stable-octahedron to high-energy-unstable tetrahedron sites close to the intrinsic vacancy regions, which give rise to the formation of local 4-fold coordinated motifs. Our analyses suggest that the high figures of merit of Ge2Sb2Te5 are achieved from the optimal combination of intrinsic vacancies provided by Sb2Te3 and the instability of the tetrahedron sites provided by GeTe.

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