We report key advances in the area of GW calculations, review the available software implementations and define standardization criteria to render the comparison between GW calculations from different codes meaningful, and identify future major challenges in the area of quasiparticle calculations. This Topical Issue should be a reference point for further developments in the field
International audienceThe GW approximation to the formally exact many-body perturbation theory has b...
The GW approximation in electronic structure theory has become a widespread tool for predicting elec...
We present GW many-body results for ground-state properties of two simple but very distinct families...
We report key advances in the area of GW calculations, review the available software implementations...
Ab initio many-body perturbation theory within the GW approximation is a Green's function formalism ...
International audienceAb initio many-body perturbation theory within the GW approximation is a Green...
The GW method, which can describe electronic excitations accurately, is a powerful ab initio electro...
The GW-method is a Green’s function based approach from the field of many body perturbation theory. ...
High-thoughput calculations at the DFT level already require sophisticated scripts for job generatio...
High-thoughput calculations at the DFT level already require sophisticated scripts for job generatio...
High-throughput calculations can be seen as one of the key technologies in obtaining large datasets ...
We identify the deviation from the straight-line error (DSLE) - i.e., the spurious nonlinearity of t...
International audienceThe GW approximation is nowadays being used to obtain accurate quasiparticle e...
International audienceThe GW approximation to the formally exact many-body perturbation theory has b...
The GW approximation in electronic structure theory has become a widespread tool for predicting elec...
We present GW many-body results for ground-state properties of two simple but very distinct families...
We report key advances in the area of GW calculations, review the available software implementations...
Ab initio many-body perturbation theory within the GW approximation is a Green's function formalism ...
International audienceAb initio many-body perturbation theory within the GW approximation is a Green...
The GW method, which can describe electronic excitations accurately, is a powerful ab initio electro...
The GW-method is a Green’s function based approach from the field of many body perturbation theory. ...
High-thoughput calculations at the DFT level already require sophisticated scripts for job generatio...
High-thoughput calculations at the DFT level already require sophisticated scripts for job generatio...
High-throughput calculations can be seen as one of the key technologies in obtaining large datasets ...
We identify the deviation from the straight-line error (DSLE) - i.e., the spurious nonlinearity of t...
International audienceThe GW approximation is nowadays being used to obtain accurate quasiparticle e...
International audienceThe GW approximation to the formally exact many-body perturbation theory has b...
The GW approximation in electronic structure theory has become a widespread tool for predicting elec...
We present GW many-body results for ground-state properties of two simple but very distinct families...