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首页> 外文期刊>Journal of Physics. Condensed Matter >Electron interaction and spin effects in quantum wires, quantum dots and quantum point contacts: a first-principles mean-field approach
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Electron interaction and spin effects in quantum wires, quantum dots and quantum point contacts: a first-principles mean-field approach

机译:量子线,量子点和量子点接触中的电子相互作用和自旋效应:第一原理均值场方法

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摘要

We have developed a mean-field first-principles approach for studying electronic and transport properties of low dimensional lateral structures in the integer quantum Hall regime. The electron interactions and spin effects are included within the spin density functional theory in the local density approximation where the conductance, the density, the effective potentials and the band structure are calculated on the basis of the Green's function technique. In this paper we present a systematic review of the major results obtained on the energetics, spin polarization, effective g factor, magnetosubband and edge state structure of split-gate and cleaved-edge overgrown quantum wires as well as on the conductance of quantum point contacts (QPCs) and open quantum dots. In particular, we discuss how the spin-resolved subband structure, the current densities, the confining potentials, as well as the spin polarization of the electron and current densities in quantum wires and antidots evolve when an applied magnetic field varies. We also discuss the role of the electron interaction and spin effects in the conductance of open systems focusing our attention on the 0.7 conductance anomaly in the QPCs. Special emphasis is given to the effect of the electron interaction on the conductance oscillations and their statistics in open quantum dots as well as to interpretation of the related experiments on the ultralow temperature saturation of the coherence time in open dots.
机译:我们已经开发了一种平均场第一性原理方法,用于研究整数量子霍尔系统中低维横向结构的电子和输运性质。电子相互作用和自旋效应包含在自旋密度泛函理论中的局部密度近似中,其中基于格林函数技术计算电导,密度,有效电势和能带结构。在本文中,我们对在分裂门和分裂边缘过长的量子线的能量学,自旋极化,有效g因子,磁子带和边缘态结构以及量子点接触的电导方面获得的主要结果进行了系统的综述。 (QPC)和开放量子点。特别是,我们讨论了当施加的磁场变化时,自旋分辨子带的结构,电流密度,限制电位以及电子的自旋极化和量子线和解毒剂中电流密度的变化。我们还讨论了电子相互作用和自旋效应在开放系统电导中的作用,重点放在了QPC的0.7电导异常上。特别强调了电子相互作用对开放量子点中电导振荡及其统计的影响,以及对开放点中相干时间的超低温饱和度的相关实验的解释。

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