We consider spherical jellium clusters with up to 200 electrons as a testing ground for density functional approximations to the exchange-correlation energy of a many-electron ground state. As nearly-exact standards, we employ Hartree–Fock energies at the exchange-only level and the diffusion Monte Carlo (DMC) energies of Sottile and Ballone (2001) at the correlated level. The density functionals tested are the local spin density (LSD), generalized gradient (GGA), and meta-generalized gradient (meta-GGA) approximations; the latter gives the most accurate results. By fitting the deviation from the LSD energy of closed-shell clusters to the predictions of the liquid drop model, we extract the exchange-correlation surface energies and curvatur...
Since long-range electron-electron correlation is treated properly in the random phase approximation...
In a fixed-node diffusion Monte Carlo calculation of the total energy of jellium slabs, Acioli and C...
We benchmark the ground state energies and the density profiles of atomic repulsive Fermi gases in o...
Jellium, a simple model of metals, is a standard testing ground for density functionals both for bul...
By combining variational Monte Carlo (VMC) and complete-basis-set limit Hartree-Fock (HF) calculatio...
By combining variational Monte Carlo (VMC) and complete-basis-set limit Hartree-Fock (HF) calculatio...
We compare Kohn - Sham results (density, cohesive energy, size and effect of charging) of the spheri...
We compare Kohn - Sham results (density, cohesive energy, size and effect of charging) of the spheri...
arXiv:cond-mat/0012116v1In this article we describe recent progress in the computational many-body t...
7 p., 9 figurasWe propose a generalized gradient approximation (GGA) for the angle- and system-avera...
Generalized gradient approximations (GGA’s) seek to improve upon the accuracy of the local-spin-dens...
We present quantum Monte Carlo calculations of the surface energy of the electron gas (jellium). Our...
We construct a generalized gradient approximation (GGA) for the density {ital n}{sub xc}({ital r},{i...
We construct a generalized gradient approximation (GGA) for the density {ital n}{sub xc}({ital r},{i...
Piecewise linearity of the energy with respect to fractional electron removal or addition is a requi...
Since long-range electron-electron correlation is treated properly in the random phase approximation...
In a fixed-node diffusion Monte Carlo calculation of the total energy of jellium slabs, Acioli and C...
We benchmark the ground state energies and the density profiles of atomic repulsive Fermi gases in o...
Jellium, a simple model of metals, is a standard testing ground for density functionals both for bul...
By combining variational Monte Carlo (VMC) and complete-basis-set limit Hartree-Fock (HF) calculatio...
By combining variational Monte Carlo (VMC) and complete-basis-set limit Hartree-Fock (HF) calculatio...
We compare Kohn - Sham results (density, cohesive energy, size and effect of charging) of the spheri...
We compare Kohn - Sham results (density, cohesive energy, size and effect of charging) of the spheri...
arXiv:cond-mat/0012116v1In this article we describe recent progress in the computational many-body t...
7 p., 9 figurasWe propose a generalized gradient approximation (GGA) for the angle- and system-avera...
Generalized gradient approximations (GGA’s) seek to improve upon the accuracy of the local-spin-dens...
We present quantum Monte Carlo calculations of the surface energy of the electron gas (jellium). Our...
We construct a generalized gradient approximation (GGA) for the density {ital n}{sub xc}({ital r},{i...
We construct a generalized gradient approximation (GGA) for the density {ital n}{sub xc}({ital r},{i...
Piecewise linearity of the energy with respect to fractional electron removal or addition is a requi...
Since long-range electron-electron correlation is treated properly in the random phase approximation...
In a fixed-node diffusion Monte Carlo calculation of the total energy of jellium slabs, Acioli and C...
We benchmark the ground state energies and the density profiles of atomic repulsive Fermi gases in o...