Proliferation of metallic domains caused by inhomogeneous heating near the electrically-driven transition in VO nanobeams
arXiv:1503.01003 · doi:10.1103/PhysRevB.92.155121
Abstract
We discuss the mechanisms behind the electrically driven insulator-metal transition in single crystalline VO nanobeams. Our DC and AC transport measurements and the versatile harmonic analysis method employed show that non-uniform Joule heating causes phase inhomogeneities to develop within the nanobeam and is responsible for driving the transition in VO. A Poole-Frenkel like purely electric field induced transition is found to be absent and the role of percolation near and away from the electrically driven transition in VO is also identified. The results and the harmonic analysis can be generalized to many strongly correlated materials that exhibit electrically driven transitions.
References in corpus (5)
- Mott transition in VO2 revealed by infrared spectroscopy and nano-imaging
- Local Temperature Redistribution and Structural Transition During Joule-Heating-Driven Conductance Switching in VO2
- Multiple Avalanches Across the Metal-Insulator Transition of Vanadium Oxide Nano-scaled Junctions
- Electrically-driven phase transition in magnetite nanostructures
- Separating electric field and thermal effects across the metal-insulator transition in vanadium oxide nanobeams