Combining nonresonant inelastic x-ray scattering experiments with state-of-the-art ab initio many-body calculations, we investigate the electronic screening mechanisms in strongly correlated CuO in a large range of energy and momentum transfers. The excellent agreement between theory and experiment, including the low-energy charge excitations, allows us to use the calculated dynamical screening as a safe building block for many-body perturbation theory and to elucidate the crucial role played by d-d excitations in renormalizing the band gap of CuO. In this way we can dissect the contributions of different excitations to the electronic self-energy which is illuminating concerning both the general theory and this prototypical material.Combini...
article provisoireThe state-of-the-art theoretical methods to calculate electronic excitations are s...
excited state. By means of a perturbation theoretical treatment of the Coulomb interaction between t...
In strongly correlated systems the strength of Coulomb interactions between electrons, relative to t...
Combining nonresonant inelastic x-ray scattering experiments with state-of-the-art ab initio many-bo...
Ultrafast spectroscopies constitute a fundamental tool to investigate the dynamics of non-equilibriu...
Ultrafast spectroscopies constitute a fundamental tool to investigate the dynamics of non-equilibriu...
International audienceWe present ab initio quasiparticle calculations for electronic excitations and...
We show that the dynamical screening of the Coulomb interaction among Cu-d electrons in high-Tc cupr...
A theoretical study of the electronic structure and optical response of three copper oxides (Cu2O, C...
We report the electronic structure of monoclinic CuO as obtained from first principles calculations ...
We measured the high-resolution Cu L3 edge resonant inelastic x-ray scattering (RIXS) of undoped cup...
The study of elementary bosonic excitations is essential toward a complete description of quantum el...
The complex phase diagram of strongly correlated materials is regulated by the delicate interplay be...
article provisoireThe state-of-the-art theoretical methods to calculate electronic excitations are s...
excited state. By means of a perturbation theoretical treatment of the Coulomb interaction between t...
In strongly correlated systems the strength of Coulomb interactions between electrons, relative to t...
Combining nonresonant inelastic x-ray scattering experiments with state-of-the-art ab initio many-bo...
Ultrafast spectroscopies constitute a fundamental tool to investigate the dynamics of non-equilibriu...
Ultrafast spectroscopies constitute a fundamental tool to investigate the dynamics of non-equilibriu...
International audienceWe present ab initio quasiparticle calculations for electronic excitations and...
We show that the dynamical screening of the Coulomb interaction among Cu-d electrons in high-Tc cupr...
A theoretical study of the electronic structure and optical response of three copper oxides (Cu2O, C...
We report the electronic structure of monoclinic CuO as obtained from first principles calculations ...
We measured the high-resolution Cu L3 edge resonant inelastic x-ray scattering (RIXS) of undoped cup...
The study of elementary bosonic excitations is essential toward a complete description of quantum el...
The complex phase diagram of strongly correlated materials is regulated by the delicate interplay be...
article provisoireThe state-of-the-art theoretical methods to calculate electronic excitations are s...
excited state. By means of a perturbation theoretical treatment of the Coulomb interaction between t...
In strongly correlated systems the strength of Coulomb interactions between electrons, relative to t...