DYNAMIC THEORY FOR STRONGLY CORRELATED 2-DIMENSIONAL ELECTRON-SYSTEMS

被引:65
|
作者
NEILSON, D
SWIERKOWSKI, L
SJOLANDER, A
SZYMANSKI, J
机构
[1] POLISH ACAD SCI, INST PHYS, PL-02668 WARSAW, POLAND
[2] CHALMERS TECHN UNIV, INST THEORET PHYS, S-41296 GOTHENBURG, SWEDEN
[3] TELECOM AUSTRALIA, RES LABS, CLAYTON 3168, AUSTRALIA
关键词
D O I
10.1103/PhysRevB.44.6291
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We describe a method for treating the time-dependent behavior of the electron cloud surrounding each electron in a two-dimensional electron gas. The method is based on a conserving solution of the quantum kinetic equation for the relaxation function of the system using the Maori formalism with two distinct memory functions, one for the collective degrees of freedom and one for the single-particle modes. At lower electron densities these dynamic effects are shown to become increasingly important and to play a part in the eventual solidification into a Wigner crystal. We find that the plasmon resonance energy omega-p (q) is strongly depressed compared with the random-phase approximation, leading to a negative dispersion for large q in the low-density region. We have determined the width of the plasmon peak and find that as the Wigner-crystal transition point is approached, the plasmon peak remains well defined even for q comparable to the Fermi momentum. For r(s) greater-than-or-similar-to 20, we observe a low-energy peak in the excitation spectrum of the electron liquid for values of q matching the reciprocal vector of the Wigner lattice. The occurrence of this peak is matched by the appearance of a large peak in the static susceptibility at that q value.
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页码:6291 / 6305
页数:15
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