We have measured bulk sensitive photoemission spectra of pure vanadium sesquioxide (V2O3) in its metallic phase as a function of different surface preparations. We observe the presence of a clear coherent peak in the vicinity of the Fermi level and of satellites intensities at the V 2p core level. After scraping, the coherent intensities are almost completely suppressed in both core level and valence band. Our results suggest a remarkable change of the screening properties in strongly correlated systems when going from the surface to the volume
V2O3 is a transition-metal oxide that exhibits a large metal-insulator transition at about 150 K. At...
Phase transitions are key in determining and controlling the quantum properties of correlated materi...
In solids, strong repulsion between electrons can inhibit their movement and result in a “Mott” meta...
We have measured bulk sensitive photoemission spectra of pure vanadium sesquioxide (V2O3) in its met...
We have measured bulk sensitive photoemission spectra of pure vanadium sesquioxide (V2O3) in its met...
We have measured hard x-ray photoemission spectra of pure vanadium sesquioxide (V2O3) across its met...
We study the Mott-Hubbard metal-insulator transition in single-crystal $\chem{V_2O_3}$ using hard X-...
We present a comprehensive study of the photon energy dependence of the valence band photoemission y...
Using angle resolved photoemission spectroscopy, we report the first band dispersions and distinct f...
The electronic and optical properties of monoclinic and rhombohedral V2O3 are investigated in the fr...
The electronic structure of strongly correlated vanadium compounds has been investigated using elect...
We present an angle resolved photoemission study of V2O3, a prototype system for the observation of ...
Using angle resolved photoemission spectroscopy, we report the first band dispersions and distinct f...
The surface electronic structure of single-crystal V2O3 has been studied by using ultraviolet and x-...
We study the electronic structure of Mott-Hubbard systems SrVO3 and CaVO3 with bulk and surface-sens...
V2O3 is a transition-metal oxide that exhibits a large metal-insulator transition at about 150 K. At...
Phase transitions are key in determining and controlling the quantum properties of correlated materi...
In solids, strong repulsion between electrons can inhibit their movement and result in a “Mott” meta...
We have measured bulk sensitive photoemission spectra of pure vanadium sesquioxide (V2O3) in its met...
We have measured bulk sensitive photoemission spectra of pure vanadium sesquioxide (V2O3) in its met...
We have measured hard x-ray photoemission spectra of pure vanadium sesquioxide (V2O3) across its met...
We study the Mott-Hubbard metal-insulator transition in single-crystal $\chem{V_2O_3}$ using hard X-...
We present a comprehensive study of the photon energy dependence of the valence band photoemission y...
Using angle resolved photoemission spectroscopy, we report the first band dispersions and distinct f...
The electronic and optical properties of monoclinic and rhombohedral V2O3 are investigated in the fr...
The electronic structure of strongly correlated vanadium compounds has been investigated using elect...
We present an angle resolved photoemission study of V2O3, a prototype system for the observation of ...
Using angle resolved photoemission spectroscopy, we report the first band dispersions and distinct f...
The surface electronic structure of single-crystal V2O3 has been studied by using ultraviolet and x-...
We study the electronic structure of Mott-Hubbard systems SrVO3 and CaVO3 with bulk and surface-sens...
V2O3 is a transition-metal oxide that exhibits a large metal-insulator transition at about 150 K. At...
Phase transitions are key in determining and controlling the quantum properties of correlated materi...
In solids, strong repulsion between electrons can inhibit their movement and result in a “Mott” meta...