Publication | Closed Access
Photoinduced insulator-to-metal transition and surface statistics of VO_2 monitored by elastic light scattering
17
Citations
35
References
2015
Year
Optical MaterialsEngineeringSurface StatisticsChemistrySpectroscopic PropertyIi-vi SemiconductorSurface Autocorrelation FunctionOptical PropertiesOptical SpectroscopyVo2 LatticePhysicsElastic LightNon-linear OpticVo2 GrainsLayered MaterialSurface CharacterizationInsulator-to-metal TransitionNatural SciencesSpectroscopySurface ScienceApplied PhysicsCondensed Matter PhysicsLight ScatteringSurface AnalysisTopological Heterostructures
Measurements of ultrafast light scattering within a hemisphere are performed for statistical analysis of nonequilibrium processes in VO2 epitaxial film. A Gerchberg-Saxton error reduction algorithm is applied for accurate calculation of a surface autocorrelation function from light scattering data and for partial reconstruction of a power spectral density function. Upon ultrafast photoinduced phase transition of VO2, the elastic light scattering reveals anisotropic grain-size-dependent dynamics. It was found that the transition rate depends on the optical absorption and orientation of VO2 grains with respect to polarization of the pump pulse. An observed stepwise evolution of surface autocorrelation length and transient anisotropy of the scattering field presumably originates from complex multistage transformation of VO2 lattice on a subpicosecond time scale.
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