We present an accurate approach to compute X-ray photoelectron spectra based on the GW Green's function method that overcomes the shortcomings of common density functional theory approaches. GW has become a popular tool to compute valence excitations for a wide range of materials. However, core-level spectroscopy is thus far almost uncharted in GW. We show that single-shot perturbation calculations in the G0W0 approximation, which are routinely used for valence states, cannot be applied for core levels and suffer from an extreme, erroneous transfer of spectral weight to the satellite spectrum. The correct behavior can be restored by partial self-consistent GW schemes or by using hybrid functionals with almost 50% of exact exchange as a star...
Core-electron x-ray photoelectron spectroscopy is a powerful technique for studying the electronicst...
In this contribution we describe our G0W0 implementation in the quantum chemistry package TURBOMOLE....
We introduce a new method for determining accurate values of the valence-band maximum in x-ray photo...
We present an accurate approach to compute X-ray photoelectron spectra based on the GW Green's funct...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The $GW$ approximation has been recently gaining popularity among the method for simulating molecula...
We present a relativistic correction scheme to improve the accuracy of 1s core-level binding energie...
International audienceX-ray photoelectron spectroscopy (XPS) measures electron removal energies, pro...
Here we present a systematic study on the performance of different <i>GW</i> approaches: <i>G</i><su...
The GW approximation in electronic structure theory has become a widespread tool for predicting elec...
Absolute binding energies of core electrons in molecules and bulk materials can be efficiently calcu...
We present an implementation of G0W0 calculations including spin-orbit coupling (SOC) enabling inves...
Here we present a systematic study on the performance of different GW approaches: G(0)W(0), G(0)W(0)...
Core-electron x-ray photoelectron spectroscopy is a powerful technique for studying the electronicst...
In this contribution we describe our G0W0 implementation in the quantum chemistry package TURBOMOLE....
We introduce a new method for determining accurate values of the valence-band maximum in x-ray photo...
We present an accurate approach to compute X-ray photoelectron spectra based on the GW Green's funct...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
The $GW$ approximation has been recently gaining popularity among the method for simulating molecula...
We present a relativistic correction scheme to improve the accuracy of 1s core-level binding energie...
International audienceX-ray photoelectron spectroscopy (XPS) measures electron removal energies, pro...
Here we present a systematic study on the performance of different <i>GW</i> approaches: <i>G</i><su...
The GW approximation in electronic structure theory has become a widespread tool for predicting elec...
Absolute binding energies of core electrons in molecules and bulk materials can be efficiently calcu...
We present an implementation of G0W0 calculations including spin-orbit coupling (SOC) enabling inves...
Here we present a systematic study on the performance of different GW approaches: G(0)W(0), G(0)W(0)...
Core-electron x-ray photoelectron spectroscopy is a powerful technique for studying the electronicst...
In this contribution we describe our G0W0 implementation in the quantum chemistry package TURBOMOLE....
We introduce a new method for determining accurate values of the valence-band maximum in x-ray photo...