We review some recent developments in many-body perturbation theory (MBPT) calculations that have enabled the study of interfaces and defects. Starting from the theoretical basis of MBPT, Hedin’s equations are presented, leading to the GW and GWΓ approximations. We introduce the perturbative approach, that is the one most commonly used for obtaining quasiparticle (QP) energies. The practical strategy presented for dealing with the frequency dependence of the self-energy operator is based on either plasmon-pole models (PPM) or the contour deformation technique, with the latter being more accurate. We also discuss the extrapolar method for reducing the number of unoccupied states which need to be included explicitly in the calculations. The u...
Within many-body perturbation theory, we apply vertex corrections to various closed-shell atoms and ...
An accurate description of the electronic structure of semiconductors and insulators is essential in...
Accurate models of electron correlation are key to understanding and predicting important physical c...
We demonstrate the correspondence between charge transition levels of localized point defects in hyb...
We perform a comparative study of the performances of some standard approaches within the many-body ...
International audienceThe bandstructure of gold is calculated using many-body perturbation theory (M...
We use many-body perturbation theory, the state-of-the-art method for band-gap calculations, to comp...
We propose an alternative formulation of Many-Body Perturbation Theory that uses the densityfunction...
We use many-body perturbation theory, the state-of-the-art method for band-gap calculations, to comp...
A formalism for energy-dependent many-body perturbation theory (MBPT), previously indicated in our r...
We use many-body perturbation theory, the state-of-the-art method for band-gap calculations, to comp...
We present a quantitative parameter-free method for calculating defect states and charge-transition ...
We present an approach to studying optical band gaps in real solids in which quantum Monte Carl...
38 pages, 39 figures. Accepted for publication in Phys. Rev. BWe consider serious conceptual problem...
Recent progress in the theory and computation of electronic structure is bringing an unprecedented l...
Within many-body perturbation theory, we apply vertex corrections to various closed-shell atoms and ...
An accurate description of the electronic structure of semiconductors and insulators is essential in...
Accurate models of electron correlation are key to understanding and predicting important physical c...
We demonstrate the correspondence between charge transition levels of localized point defects in hyb...
We perform a comparative study of the performances of some standard approaches within the many-body ...
International audienceThe bandstructure of gold is calculated using many-body perturbation theory (M...
We use many-body perturbation theory, the state-of-the-art method for band-gap calculations, to comp...
We propose an alternative formulation of Many-Body Perturbation Theory that uses the densityfunction...
We use many-body perturbation theory, the state-of-the-art method for band-gap calculations, to comp...
A formalism for energy-dependent many-body perturbation theory (MBPT), previously indicated in our r...
We use many-body perturbation theory, the state-of-the-art method for band-gap calculations, to comp...
We present a quantitative parameter-free method for calculating defect states and charge-transition ...
We present an approach to studying optical band gaps in real solids in which quantum Monte Carl...
38 pages, 39 figures. Accepted for publication in Phys. Rev. BWe consider serious conceptual problem...
Recent progress in the theory and computation of electronic structure is bringing an unprecedented l...
Within many-body perturbation theory, we apply vertex corrections to various closed-shell atoms and ...
An accurate description of the electronic structure of semiconductors and insulators is essential in...
Accurate models of electron correlation are key to understanding and predicting important physical c...