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Role of temperature-dependent electron trapping dynamics in the optically driven nanodomain transformation in a PbTiO${_3}$/SrTiO${_3}$ superlattice

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arxiv 1912.04878 v1 pith:AJ6TZYSV submitted 2019-12-10 cond-mat.mtrl-sci physics.app-phphysics.data-an

classification cond-mat.mtrl-sciphysics.app-phphysics.data-an
keywords illuminationintensitydependencenanodomainopticalpbtiopolarizationsrtio
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abstract

The spontaneously formed striped polarization nanodomain configuration of a PbTiO${_3}$/SrTiO${_3}$ superlattice transforms to a uniform polarization state under above-bandgap illumination with a time dependence varying with the intensity of optical illumination and a well-defined threshold intensity. Recovery after the end of illumination occurs over a temperature-dependent period of tens of seconds at room temperature and shorter times at elevated temperatures. A model in which the screening of the depolarization field depends on the population of trapped electrons correctly predicts the observed temperature and optical intensity dependence.

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