Resolving transitions in the mesoscale domain configuration in VO2 using laser speckle pattern analysis

The configuration and evolution of coexisting mesoscopic domains with contrasting material properties are critical in creating novel functionality through emergent physical properties. However, current approaches that map the domain structure involve either spatially resolved but protracted scanning...

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Veröffentlicht in:Scientific reports 2014-09, Vol.4 (1), p.6259-6259, Article 6259
Hauptverfasser: Seal, Katyayani, Sharoni, Amos, Messman, Jamie M., Lokitz, Bradley S., Shaw, Robert W., Schuller, Ivan K., Snijders, Paul C., Ward, Thomas Z.
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Sprache:eng
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Zusammenfassung:The configuration and evolution of coexisting mesoscopic domains with contrasting material properties are critical in creating novel functionality through emergent physical properties. However, current approaches that map the domain structure involve either spatially resolved but protracted scanning probe experiments without real time information on the domain evolution, or time resolved spectroscopic experiments lacking domain-scale spatial resolution. We demonstrate an elegant experimental technique that bridges these local and global methods, giving access to mesoscale information on domain formation and evolution at time scales orders of magnitude faster than current spatially resolved approaches. Our straightforward analysis of laser speckle patterns across the first order phase transition of VO 2 can be generalized to other systems with large scale phase separation and has potential as a powerful method with both spatial and temporal resolution to study phase separation in complex materials.
ISSN:2045-2322
2045-2322
DOI:10.1038/srep06259