The $GW$ approximation has been recently gaining popularity among the method for simulating molecular core-level X-ray photoemission spectra. Traditionally, $GW$ core-level binding energies have been computed using either the cc-pV$n$Z or def2-$n$ZVP basis set families, extrapolating the obtained results to the complete basis set limit, followed by a an element-specific relativistic correction. Despite of achieving good accuracy, these binding energies are chronically underestimated. By using first-row elements and standard techniques known to offer good cost-accuracy ratio in other theories, we show that the cc-pV$n$Z and def2-$n$ZVP families show large contraction errors and lead to unreliable complete basis set extrapolations. On the oth...
We describe an all-electron G₀W₀ implementation for periodic systems with k-point sampling implement...
We present a quantitatively accurate machine-learning (ML) model for the computational prediction of...
The capability to determine core–electron binding energies (CEBEs) is vital in the analysis of X-ray...
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...
Core-electron binding energies (CEBEs) computed within a !self-consistent field approach require lar...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
Core-electron binding energies (CEBEs) computed within a !self-consistent field approach require lar...
Here we present a systematic study on the performance of different GW approaches: G(0)W(0), G(0)W(0)...
The performance of gaussian basis sets for density functional theory based calculations of core elec...
Here we present a systematic study on the performance of different <i>GW</i> approaches: <i>G</i><su...
Core-electron x-ray photoelectron spectroscopy is a powerful technique for studying the electronicst...
We investigate the basis set requirements for calculating properties corresponding to removing core ...
We propose large-core correlation-consistent pseudopotential basis sets for the heavy p-block elemen...
We describe an all-electron G₀W₀ implementation for periodic systems with k-point sampling implement...
We present a quantitatively accurate machine-learning (ML) model for the computational prediction of...
The capability to determine core–electron binding energies (CEBEs) is vital in the analysis of X-ray...
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...
Core-electron binding energies (CEBEs) computed within a !self-consistent field approach require lar...
The GW method is routinely used to predict charged valence excitations in molecules and solids. Howe...
Core-electron binding energies (CEBEs) computed within a !self-consistent field approach require lar...
Here we present a systematic study on the performance of different GW approaches: G(0)W(0), G(0)W(0)...
The performance of gaussian basis sets for density functional theory based calculations of core elec...
Here we present a systematic study on the performance of different <i>GW</i> approaches: <i>G</i><su...
Core-electron x-ray photoelectron spectroscopy is a powerful technique for studying the electronicst...
We investigate the basis set requirements for calculating properties corresponding to removing core ...
We propose large-core correlation-consistent pseudopotential basis sets for the heavy p-block elemen...
We describe an all-electron G₀W₀ implementation for periodic systems with k-point sampling implement...
We present a quantitatively accurate machine-learning (ML) model for the computational prediction of...
The capability to determine core–electron binding energies (CEBEs) is vital in the analysis of X-ray...