Self-consistent Overhauser model for the pair distribution function of an electron gas at finite temperature |
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Authors: | R. Asgari M. Cardenas M. Polini M.P. Tosi |
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Affiliation: | a NEST-INFM and Classe di Scienze, Scuola Normale Superiore, I-56126 Pisa, Italy b Institute for Studies in Theoretical Physics and Mathematics, Tehran 19395-5531, Iran c Instituto de Física, Universidad Católica de Valparaíso, 2374638 Valparaíso, Chile |
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Abstract: | We present calculations of the spin-averaged pair distribution function g(r) in a homogeneous gas of electrons moving in dimensionality D=3 or D=2 at finite temperature. The model involves the solution of a two-electron scattering problem via an effective potential, which embodies many-body effects through a self-consistent Hartree approximation, leading to two-body wave functions to be averaged over a temperature-dependent distribution of relative momentum for electron pairs. We report illustrative numerical results for g(r) in an intermediate-coupling regime and interpret them in terms of changes of short-range order with increasing temperature. |
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Keywords: | 71.10.Ca |
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