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Titlebook: Electron Correlation in Molecules and Condensed Phases; N. H. March Book 1996 Springer Science+Business Media New York 1996 atomic propert

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Homogeneous and Inhomogeneous Electron Assemblies, evidence which demonstrates the weakness of the electron—ion interaction. Therefore the jellium model, introduced initially by Sommerfeld long ago, in which the ionic lattice is smeared out into a uniform neutralizing background of positive charge where the correlated electronic motion takes place, affords a valuable starting point.
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s most grateful to Professors A. Baldereschi, R. Car, and A. Quattropani for making these visits possible, and for the splendidly stimulating environment provided. Professors S. Baroni and R. Resta also influenced considerably the presentation of material by constructive help and comments. Most impo
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M. Moseler,B. Huber,H. Häkkinen,U. Landman evidence which demonstrates the weakness of the electron—ion interaction. Therefore the jellium model, introduced initially by Sommerfeld long ago, in which the ionic lattice is smeared out into a uniform neutralizing background of positive charge where the correlated electronic motion takes place, affords a valuable starting point.
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The ART of Cosmological Simulationspecimen of highly compensated .-type InSb) that magnetic fields would aid Wigner crystallization (now referred to as magnetically induced Wigner solid, MIWS). The pioneering experiment of Andrei .(1988) in this latter area has been subsequently verified and extended by numerous workers (see, for instance, Buhmann ., 1991; Andrei, 1992).
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Outline, main tools to be employed here are the first- and second-order density matrices (see Section 2.2), including the important observable electron density ρ(.) for the analytical development presented. Closely related tools, e.g., the Greens function, are used in discussing quantum computer simulations
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