Magnetic field dependence of the low-energy spectrum of a two-electron quantum dot

被引:29
作者
Creffield, CE [1 ]
Jefferson, JH
Sarkar, S
Tipton, DLJ
机构
[1] CSIC, Inst Ciencia Mat, E-28049 Madrid, Spain
[2] Def Evaluat & Res Agcy, Elect Sector, Malvern WR14 3PS, Worcs, England
[3] Kings Coll London, Dept Phys, London WC2R 2LS, England
来源
PHYSICAL REVIEW B | 2000年 / 62卷 / 11期
关键词
D O I
10.1103/PhysRevB.62.7249
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The low-energy eigenstates of two interacting electrons in a square quantum dot in a magnetic field are determined by numerical diagonalization. In the strong correlation regime, the low-energy eigenstates show Aharonov-Bohm-type oscillations, which decrease in amplitude as the field increases. These oscillations, including the decrease in amplitude, may be reproduced to good accuracy by an extended Hubbard model in a basis of localized one-electron Hartree states. The hopping matrix element t comprises the usual kinetic energy term plus a term derived from the Coulomb interaction. The latter is essential to get good agreement with exact results. The phase of t gives rise to the usual Peierls factor, related to the flux through a square defined by the peaks of the Hartree wave functions. The magnitude of t decreases slowly with magnetic field as the Hartree functions become more localized, giving rise to the decreasing amplitude of the Aharonov-Bohm oscillations.
引用
收藏
页码:7249 / 7256
页数:8
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