We investigate the electronic structure of Ca1−xSrxVO3 using photoemission spectroscopy. Core level spectra establish an electronic phase separation at the surface, leading to a distinctly different surface electronic structure compared to the bulk. Analysis of the photoemission spectra of this system allowed us to separate the surface and bulk contributions. These results help us to understand properties related to two vastly differing energy scales, namely the low-energy scale of thermal excitations ( ~kBT) and the high-energy scale related to Coulomb and other electronic interactions
The photoemission spectroscopy is the most standard method to determine the density of states (DOS)...
Understanding the physics of strongly correlated electronic systems has been a central issue in cond...
The influence of local Coulomb correlations on the surface electronic structure of SrVO3, a strongly...
We investigate the electronic structure of Ca1-xSrxVO3 using photoemission spectroscopy. Core level ...
We investigate the electronic structure of Ca<SUB>1−x</SUB>Sr<SUB>x</SUB>VO<SUB>3</SUB> using ...
We investigate the electronic structure of Ca1-xSrxVO3 using careful state-of-the-art experiments an...
Photoemission spectroscopy offers the unique possibility of mapping out the electronic structure of ...
We report hard x-ray photoemission spectroscopy measurements of the electronic structure of the prot...
Photoemission spectroscopy offers the unique possibility of mapping out the electronic structure of ...
Photoemission spectroscopy offers the unique possibility of mapping out the electronic structure of ...
We investigate the electronic structure of $Ca_1_xSr_xVO_3$ using careful state-of-the-art experimen...
We study the electronic structure of Mott-Hubbard systems SrVO3 and CaVO3 with bulk and surface-sens...
We report on a photoemission study of the electronic structure of metallic La1-xCaxVO3, with x=0.4 a...
The surface of the complex oxides, in particular the manganese perovskites, is dominated by a differ...
The correlated electronic structure of SrVO3 has been investigated by angle-resolved photoemission s...
The photoemission spectroscopy is the most standard method to determine the density of states (DOS)...
Understanding the physics of strongly correlated electronic systems has been a central issue in cond...
The influence of local Coulomb correlations on the surface electronic structure of SrVO3, a strongly...
We investigate the electronic structure of Ca1-xSrxVO3 using photoemission spectroscopy. Core level ...
We investigate the electronic structure of Ca<SUB>1−x</SUB>Sr<SUB>x</SUB>VO<SUB>3</SUB> using ...
We investigate the electronic structure of Ca1-xSrxVO3 using careful state-of-the-art experiments an...
Photoemission spectroscopy offers the unique possibility of mapping out the electronic structure of ...
We report hard x-ray photoemission spectroscopy measurements of the electronic structure of the prot...
Photoemission spectroscopy offers the unique possibility of mapping out the electronic structure of ...
Photoemission spectroscopy offers the unique possibility of mapping out the electronic structure of ...
We investigate the electronic structure of $Ca_1_xSr_xVO_3$ using careful state-of-the-art experimen...
We study the electronic structure of Mott-Hubbard systems SrVO3 and CaVO3 with bulk and surface-sens...
We report on a photoemission study of the electronic structure of metallic La1-xCaxVO3, with x=0.4 a...
The surface of the complex oxides, in particular the manganese perovskites, is dominated by a differ...
The correlated electronic structure of SrVO3 has been investigated by angle-resolved photoemission s...
The photoemission spectroscopy is the most standard method to determine the density of states (DOS)...
Understanding the physics of strongly correlated electronic systems has been a central issue in cond...
The influence of local Coulomb correlations on the surface electronic structure of SrVO3, a strongly...