The Metal-Insulator transition (MIT) in VO2 is characterized by the complex interplay among lattice, electronic and orbital degrees of freedom. In this contribution we investigated the strain-modulation of the orbital hierarchy and the influence over macroscopic properties of the metallic phase of VO2 such as Fermi Level (FL) population and metallicity, i.e., the material ability to screen an electric field, by means of temperature-dependent X-ray Absorption Near Edge Structure (XANES) and Resonant Photoemission spectroscopy (ResPES). We demonstrate that the MIT in strained VO2 is of the Filling Control type, hence it is generated by electron correlation effects. In addition, we show that the MIT in Nanostructured (NS) disordered VO2, where...
Abstract VO2 is a highly correlated electron system which has a metal-to-insulator transition (MIT) ...
Altres ajuts: ICN2 is funded by the CERCA programme/Generalitat de Catalunya.The proximity of a ther...
Materials that undergo reversible metal-insulator transitions are obvious candidates for new generat...
The Metal-Insulator transition (MIT) in VO2 is characterized by the complex interplay among lattice,...
Vanadium dioxide (VO2) undergoes a phase transition between an insulating monoclinic phase and a con...
VO2 is a strongly correlated electron system that undergoes a reversible Metal-Insulator transition ...
A Metal-insulator transition (MIT) is the ability of some materials to change between metal and insu...
Among transition metal oxides, VO2 is a particularly interesting and challenging correlated electron...
9VO2 is a strongly correlated material, which undergoes a reversible metal insulator transition (MIT...
Among transition metal oxides, VO2 is a particularly interesting and challenging correlated electron...
The salient feature of the familiar structural transition accompanying the thermally-driven metal-in...
We investigated the inhomogeneous electronic properties at the surface and interior of VO2 thin film...
Correlated electron materials can undergo a variety of phase transitions, including superconductivit...
Materials displaying metal-insulator transitions (MITs) as a function of external parameters such as...
As a typical correlated oxide, V O 2 has attracted significant attentions due to its pronounce...
Abstract VO2 is a highly correlated electron system which has a metal-to-insulator transition (MIT) ...
Altres ajuts: ICN2 is funded by the CERCA programme/Generalitat de Catalunya.The proximity of a ther...
Materials that undergo reversible metal-insulator transitions are obvious candidates for new generat...
The Metal-Insulator transition (MIT) in VO2 is characterized by the complex interplay among lattice,...
Vanadium dioxide (VO2) undergoes a phase transition between an insulating monoclinic phase and a con...
VO2 is a strongly correlated electron system that undergoes a reversible Metal-Insulator transition ...
A Metal-insulator transition (MIT) is the ability of some materials to change between metal and insu...
Among transition metal oxides, VO2 is a particularly interesting and challenging correlated electron...
9VO2 is a strongly correlated material, which undergoes a reversible metal insulator transition (MIT...
Among transition metal oxides, VO2 is a particularly interesting and challenging correlated electron...
The salient feature of the familiar structural transition accompanying the thermally-driven metal-in...
We investigated the inhomogeneous electronic properties at the surface and interior of VO2 thin film...
Correlated electron materials can undergo a variety of phase transitions, including superconductivit...
Materials displaying metal-insulator transitions (MITs) as a function of external parameters such as...
As a typical correlated oxide, V O 2 has attracted significant attentions due to its pronounce...
Abstract VO2 is a highly correlated electron system which has a metal-to-insulator transition (MIT) ...
Altres ajuts: ICN2 is funded by the CERCA programme/Generalitat de Catalunya.The proximity of a ther...
Materials that undergo reversible metal-insulator transitions are obvious candidates for new generat...