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Insights into ultrafast Ge-Te bond dynamics in a phase-change superlattice

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arxiv 1605.08157 v1 pith:2Z6MC456 submitted 2016-05-26 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords phase-changeultrafastapproachchalcogenidedynamicsmaterialssuperlatticetime
verification ladder T0 review T1 audit T2 compute T3 formal
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A long-standing question for avant-grade data storage technology concerns the nature of the ultrafast photoinduced phase transformations in the wide class of chalcogenide phase-change materials (PCMs). Overall, a comprehensive understanding of the microstructural evolution and the relevant kinetics mechanisms accompanying the out-of-equilibrium phases is still missing. Here, after overheating a phase-change chalcogenide superlattice by an ultrafast laser pulse, we indirectly track the lattice relaxation by time resolved X-ray absorption spectroscopy (tr-XAS) with a sub-ns time resolution. The novel approach to the tr-XAS experimental results reported in this work provides an atomistic insight of the mechanism that takes place during the cooling process, meanwhile a first-principles model mimicking the microscopic distortions accounts for a straightforward representation of the observed dynamics. Finally, we envisage that our approach can be applied in future studies addressing the role of dynamical structural strain in phase-change materials.

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