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28 March 2024
 
  » arxiv » cond-mat/0203585

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Interacting electrons in a one-dimensional random array of scatterers - A Quantum Dynamics and Monte-Carlo study
V. Filinov ; P. Thomas ; I. Varga ; T. Meier ; M. Bonitz ; V. Fortov ; S.W. Koch ;
Date 28 Mar 2002
Journal Phys. Rev. B 65 165124 (2002)
Subject Disordered Systems and Neural Networks; Strongly Correlated Electrons | cond-mat.dis-nn cond-mat.str-el
Affiliation1,2), P. Thomas , I. Varga (2,3), T. Meier , M. Bonitz , V. Fortov , and S.W. Koch (Institute for High Energy Density Moscow, Russia, Philipps University Marburg, Germany, Budapest University of Technology and Economics, Hungary, University of Rost
AbstractThe quantum dynamics of an ensemble of interacting electrons in an array of random scatterers is treated using a new numerical approach for the calculation of average values of quantum operators and time correlation functions in the Wigner representation. The Fourier transform of the product of matrix elements of the dynamic propagators obeys an integral Wigner-Liouville-type equation. Initial conditions for this equation are given by the Fourier transform of the Wiener path integral representation of the matrix elements of the propagators at the chosen initial times. This approach combines both molecular dynamics and Monte Carlo methods and computes numerical traces and spectra of the relevant dynamical quantities such as momentum-momentum correlation functions and spatial dispersions. Considering as an application a system with fixed scatterers, the results clearly demonstrate that the many-particle interaction between the electrons leads to an enhancement of the conductivity and spatial dispersion compared to the noninteracting case.
Source arXiv, cond-mat/0203585
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