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      In situ x-ray diffraction studies on epitaxial VO2 films grown on c-Al2O3 during thermally induced insulator-metal transition

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      Journal of Applied Physics
      AIP Publishing

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          Mott transition in VO2 revealed by infrared spectroscopy and nano-imaging

          Electrons in correlated insulators are prevented from conducting by Coulomb repulsion between them. When an insulator-to-metal transition is induced in a correlated insulator by doping or heating, the resulting conducting state can be radically different from that characterized by free electrons in conventional metals. We report on the electronic properties of a prototypical correlated insulator vanadium dioxide (VO2) in which the metallic state can be induced by increasing temperature. Scanning near-field infrared microscopy allows us to directly image nano-scale metallic puddles that appear at the onset of the insulator-to-metal transition. In combination with far-field infrared spectroscopy, the data reveal the Mott transition with divergent quasiparticle mass in the metallic puddles. The experimental approach employed here sets the stage for investigations of charge dynamics on the nanoscale in other inhomogeneous correlated electron systems.
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            Electrical switching and Mott transition in VO2

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              Comment on "VO2: Peierls or Mott-Hubbard? A View from Band Theory"

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                Author and article information

                Journal
                Journal of Applied Physics
                Journal of Applied Physics
                AIP Publishing
                0021-8979
                1089-7550
                March 15 2010
                March 15 2010
                : 107
                : 6
                : 063503
                Article
                10.1063/1.3327422
                394e897c-3ff0-4568-a043-880681cc58a0
                © 2010
                History

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