1994•Physical review. B, Condensed matterRequires access

Reintroduction of ionic structure in the self-consistent jellium model for metal clusters: Pseudopotential perturbation theory

Wolf-Dieter Schöne, Walter Ekardt, Jorge M. Pacheco

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Abstract

The structureless self-consistent jellium model for simple metal clusters is corrected by reintroducing the ionic structure via second-order pseudopotential perturbation theory. It is found that this formulation is enough to bring this approximate treatment into a quantitative agreement with fully fledged ab initio Car-Parrinello structure optimization. Furthermore, the ionic perturbation leads to a substantial improvement in the description of the optical response.

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The structureless self-consistent jellium model for simple metal clusters is corrected by reintroducing the ionic structure via second-order pseudopotential perturbation theory. It is found that this formulation is enough to bring this approximate treatment into a quantitative agreement with fully fledged ab initio Car-Parrinello structure optimization. Furthermore, the ionic perturbation leads to a substantial improvement in the description of the optical response.

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Available abstract

The structureless self-consistent jellium model for simple metal clusters is corrected by reintroducing the ionic structure via second-order pseudopotential perturbation theory. It is found that this formulation is enough to bring this approximate treatment into a quantitative agreement with fully fledged ab initio Car-Parrinello structure optimization. Furthermore, the ionic perturbation leads to a substantial improvement in the description of the optical response.

Key concepts: Jellium, Pseudopotential, Ionic bonding, Perturbation theory (quantum mechanics), Ab initio, Perturbation (astronomy), Physics, Ionic compound

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