We report the most direct experimental verification of Mott-Hubbard and charge-transfer insulators through x-ray emission spectroscopy in transition-metal (TM) fluorides. The p-d hybridization features in the spectra allow a straightforward energy alignment of the anion-2p and metal-3d valence states, which visually shows the difference between the two types of insulators. Furthermore, in parallel with the theoretical Zaanen-Sawatzky-Allen diagram, a complete experimental systematics of the 3d Coulomb interaction and the 2p-3d charge-transfer energy is reported and could serve as a universal experimental trend for other TM systems including oxides
We have performed optical and photoemission studies on Mott-Hubbard and charge transfer insulators w...
THESIS 9877Rutile-type transition-metal compounds are a continually rewarding area of research, of b...
In the field of interacting electron systems the Mott metal-to-insulator (MI) transition represents ...
We report the most direct experimental verification of Mott-Hubbard and charge-transfer insulators t...
The metal-insulator transition (MIT) in correlated materials is a novel phenomenon that accompanies ...
The electronic structures of a wide range of early transition-metal ~TM! compounds, including Ti and...
The electronic structure of Mott-Hubbard-type Ti and V oxides have been studied by photoemission and...
In this paper we study the valence electronic structure of 3d transition metal compounds in an Ander...
Transition metal compounds often display a wide range of properties, which are typically caused by s...
The metal–insulator transition (MIT) in correlated materials is a novel phenomenon that accompanies ...
This paper discusses the application of soft x-ray emission and resonant inelastic x-ray scattering ...
Two-dimensional materials can be strongly influenced by their surroundings. A dielectric environment...
In this paper, we discuss the electronic structure of transition-metal compounds in light of a new t...
This thesis investigates the electronic structure of 3d transition metal (TM) oxides. Many different...
The Mott-Anderson transition has been known as a metal-insulator (MI) transition due to both strong ...
We have performed optical and photoemission studies on Mott-Hubbard and charge transfer insulators w...
THESIS 9877Rutile-type transition-metal compounds are a continually rewarding area of research, of b...
In the field of interacting electron systems the Mott metal-to-insulator (MI) transition represents ...
We report the most direct experimental verification of Mott-Hubbard and charge-transfer insulators t...
The metal-insulator transition (MIT) in correlated materials is a novel phenomenon that accompanies ...
The electronic structures of a wide range of early transition-metal ~TM! compounds, including Ti and...
The electronic structure of Mott-Hubbard-type Ti and V oxides have been studied by photoemission and...
In this paper we study the valence electronic structure of 3d transition metal compounds in an Ander...
Transition metal compounds often display a wide range of properties, which are typically caused by s...
The metal–insulator transition (MIT) in correlated materials is a novel phenomenon that accompanies ...
This paper discusses the application of soft x-ray emission and resonant inelastic x-ray scattering ...
Two-dimensional materials can be strongly influenced by their surroundings. A dielectric environment...
In this paper, we discuss the electronic structure of transition-metal compounds in light of a new t...
This thesis investigates the electronic structure of 3d transition metal (TM) oxides. Many different...
The Mott-Anderson transition has been known as a metal-insulator (MI) transition due to both strong ...
We have performed optical and photoemission studies on Mott-Hubbard and charge transfer insulators w...
THESIS 9877Rutile-type transition-metal compounds are a continually rewarding area of research, of b...
In the field of interacting electron systems the Mott metal-to-insulator (MI) transition represents ...