Kinetics of a phonon-mediated laser-driven structural phase transition in Sn2P2Se6

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Abstract

We investigate the structural dynamics of the incommensurately modulated phase of Sn2P2Se6 by means of time-resolved X-ray diffraction following excitation by an optical pump. Tracking the incommensurable distortion in the time domain enables us to identify the transport effects leading to a complete disappearance of the incommensurate phase over the course of 100 ns. These observations suggest that a thin surface layer of the high-temperature phase forms quickly after photo-excitation and then propagates into the material with a constant velocity of 3.7 m/s. Complementary static structural measurements reveal previously unreported higher-order satellite reflection in the incommensurate phase. These higher-order reflections are attributed to cubic vibrational terms in the Hamiltonian.

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Kubli, M., Savoini, M., Abreu, E., Burganov, B., Lantz, G., Huber, L., … Johnson, S. L. (2019). Kinetics of a phonon-mediated laser-driven structural phase transition in Sn2P2Se6. Applied Sciences (Switzerland), 9(3). https://doi.org/10.3390/app9030525

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