We examine first-order perturbative results based on jellium for the surface energy of slabs of simple metals, using various local pseudo-potentials (Ashcroft, Heine–Abarenkov and evanescent core). The difference between the pseudo-potential and the jellium potential is averaged along the plane parallel to the surface. We compare these perturbative results with those of the stabilized-jellium model (a modification of the regular jellium model in which the perturbation appears in the energy functional right from the outset) and with the output of other perturbative and non-perturbative calculationshttp://www.sciencedirect.com/science/article/B6TJF-43K8S7X-S/1/0fa48d7d5deb813663c0f62b3e17e36
The average multipole surface-plasmon energy for simple metals, as well as that of ordinary surface ...
The average multipole surface-plasmon energy for simple metals, as well as that of ordinary surface ...
We report an RPA..calculation of the high-frequency contribution to the surface energy of metals. Fu...
Surface energies of aluminium ((1 1 1), (1 1 0) and (1 0 0)) were calculated in second-order perturb...
The stabilized jellium model is the simplest model which yields realistic results for the physical p...
The surface energy of elemental metals was calculated using the stabilized jellium approach. The sur...
In the liquid-drop model, the total energy of a system is expanded as a sum of volume, surface, and ...
Exact-exchange self-consistent calculations of the Kohn-Sham potential, surface energy, and work fun...
26 p., 7 figurasThe position-dependent exact-exchange energy per particle epsilon(x)(z) (defined as ...
This paper is the first of a series addressing the macroscopic surface properties of the simple meta...
A method of describing the non-locality of exchange and correlation energy and potential. used by th...
A method of describing the non-locality of exchange and correlation energy and potential. used by th...
Energy of electronic subsystem of semi-infinite metal is presented in the form of an expansion in po...
The properties of the simple metals are controlled largely by three density parameters: the equilibr...
We present a direct comparison of the exchange-only optimized effective potential (x-OEP) method, or...
The average multipole surface-plasmon energy for simple metals, as well as that of ordinary surface ...
The average multipole surface-plasmon energy for simple metals, as well as that of ordinary surface ...
We report an RPA..calculation of the high-frequency contribution to the surface energy of metals. Fu...
Surface energies of aluminium ((1 1 1), (1 1 0) and (1 0 0)) were calculated in second-order perturb...
The stabilized jellium model is the simplest model which yields realistic results for the physical p...
The surface energy of elemental metals was calculated using the stabilized jellium approach. The sur...
In the liquid-drop model, the total energy of a system is expanded as a sum of volume, surface, and ...
Exact-exchange self-consistent calculations of the Kohn-Sham potential, surface energy, and work fun...
26 p., 7 figurasThe position-dependent exact-exchange energy per particle epsilon(x)(z) (defined as ...
This paper is the first of a series addressing the macroscopic surface properties of the simple meta...
A method of describing the non-locality of exchange and correlation energy and potential. used by th...
A method of describing the non-locality of exchange and correlation energy and potential. used by th...
Energy of electronic subsystem of semi-infinite metal is presented in the form of an expansion in po...
The properties of the simple metals are controlled largely by three density parameters: the equilibr...
We present a direct comparison of the exchange-only optimized effective potential (x-OEP) method, or...
The average multipole surface-plasmon energy for simple metals, as well as that of ordinary surface ...
The average multipole surface-plasmon energy for simple metals, as well as that of ordinary surface ...
We report an RPA..calculation of the high-frequency contribution to the surface energy of metals. Fu...