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Kinetic theory for electron dynamics near a positive ion

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Published 28 October 2008 IOP Publishing Ltd
, , Citation Jeffrey M Wrighton and James W Dufty J. Stat. Mech. (2008) P10021 DOI 10.1088/1742-5468/2008/10/P10021

1742-5468/2008/10/P10021

Abstract

A theoretical description of time correlation functions for electron properties in the presence of a positive ion of charge number Z is given. The simplest case of an electron gas distorted by a single ion is considered. A semi-classical representation with a regularized electron–ion potential is used to obtain a linear kinetic theory that is asymptotically exact at short times. This Markovian approximation includes all initial (equilibrium) electron–electron and electron–ion correlations through renormalized pair potentials. The kinetic theory is solved in terms of single-particle trajectories of the electron–ion potential and a dielectric function for the inhomogeneous electron gas. The results are illustrated by a calculation of the autocorrelation function for the electron field at the ion. The dependence on charge number Z is shown to be dominated by the bound states of the effective electron–ion potential. On this basis, a very simple practical representation of the trajectories is proposed and shown to be accurate over a wide range including strong electron–ion coupling. This simple representation is then used for a brief analysis of the dielectric function for the inhomogeneous electron gas.

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10.1088/1742-5468/2008/10/P10021