A large number of today's ab initio calculations, in particular in solid-state physics, are based on density-functional theory using first-principles pseudopotentials. This approach, initially developed for the ground state, is nowadays widely used as a starting point for the calculation of excited-state properties, as, for instance, those involved in optical spectroscopy. In this paper we investigate the validity and the accuracy of the pseudopotential approximation, analyzing how different choices within the latter can influence the calculated electronic response of silicon and silicon carbide. We consider norm-conserving first-principles pseudopotentials, both in the fully nonlocal (Kleinman-Bylander) and the semilocal forms, with differ...
The electronic structure calculations represent a rigorous tool for predicting and understanding the...
International audienceQuantum Monte Carlo (QMC) methods have been applied very successfully to groun...
We present a general method of constructing in situ pseodopotentials from first-principles, all-elec...
A simple analytic local pseudopotential has been suggested for silicon. This pseudopotential has fou...
State-of-the-art theory addresses single-electron excitations in condensed matter by linking density...
State-of-the-art theory addresses single-electron excitations in condensed matter by linking density...
State-of-the-art theory addresses single-electron excitations in condensed matter by linking density...
We have performed pseudopotential self-consistent band-structure calculations for bulk solids in the...
We have performed pseudopotential self-consistent band-structure calculations for bulk solids in the...
Quantum Monte Carlo methods provide in principle a highly accurate treatment of the many-body proble...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
Si and Ge nanocrystals embedded in a wide-gap semiconductor like $\alpha$-SiC are potentially intere...
Si and Ge nanocrystals embedded in a wide-gap semiconductor like $\alpha$-SiC are potentially intere...
The electronic structure calculations represent a rigorous tool for predicting and understanding the...
International audienceQuantum Monte Carlo (QMC) methods have been applied very successfully to groun...
We present a general method of constructing in situ pseodopotentials from first-principles, all-elec...
A simple analytic local pseudopotential has been suggested for silicon. This pseudopotential has fou...
State-of-the-art theory addresses single-electron excitations in condensed matter by linking density...
State-of-the-art theory addresses single-electron excitations in condensed matter by linking density...
State-of-the-art theory addresses single-electron excitations in condensed matter by linking density...
We have performed pseudopotential self-consistent band-structure calculations for bulk solids in the...
We have performed pseudopotential self-consistent band-structure calculations for bulk solids in the...
Quantum Monte Carlo methods provide in principle a highly accurate treatment of the many-body proble...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
We systematically studied a real-space pesudopotential method for the calculation of 1s core-electro...
Si and Ge nanocrystals embedded in a wide-gap semiconductor like $\alpha$-SiC are potentially intere...
Si and Ge nanocrystals embedded in a wide-gap semiconductor like $\alpha$-SiC are potentially intere...
The electronic structure calculations represent a rigorous tool for predicting and understanding the...
International audienceQuantum Monte Carlo (QMC) methods have been applied very successfully to groun...
We present a general method of constructing in situ pseodopotentials from first-principles, all-elec...