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通过相互作用量子点的声子辅助自旋极化隧穿

Phonon-assisted spin-polarized tunneling through an interacting quantum dot.

作者信息

Rudziński W

机构信息

Department of Physics, Adam Mickiewicz University, ulica Umultowska 85, 61-614 Poznań, Poland.

出版信息

J Phys Condens Matter. 2008 Jul 9;20(27):275214. doi: 10.1088/0953-8984/20/27/275214. Epub 2008 Jun 4.

Abstract

Using the nonequilibrium Green function technique we study theoretically spin-polarized transport in double-barrier tunneling junctions based on a single-level quantum dot interacting with a local phonon mode. Phonon emission and absorption spectra have been calculated for arbitrary Coulomb correlations on the dot and for different temperatures. It is shown that in the nonlinear response regime the electron-phonon interaction gives rise to current suppression in symmetric junctions as well as to oscillations of the tunnel magnetoresistance (TMR). In asymmetric junctions, the same mechanism may lead effectively to enhancement of the diode-like characteristics. We have also found that at sufficiently low temperatures additional phonon-induced resonance peaks appear in the linear spectral function on both sides of the main resonance peaks corresponding to the quantum dot energy levels. The case of negative effective charging energy is also analyzed numerically. A significant enhancement of electric current (or suppression of TMR) above the threshold bias voltages at which the dot energy level enters the tunneling window is observed. The gate voltage-controlled rectification effect of the tunneling current in asymmetric junctions with positive and negative effective Coulomb correlations is also discussed.

摘要

利用非平衡格林函数技术,我们从理论上研究了基于与局域声子模式相互作用的单能级量子点的双势垒隧穿结中的自旋极化输运。针对量子点上任意的库仑关联以及不同温度,计算了声子发射和吸收光谱。结果表明,在非线性响应区域,电子 - 声子相互作用导致对称结中的电流抑制以及隧道磁电阻(TMR)的振荡。在非对称结中,相同机制可能有效地导致类二极管特性的增强。我们还发现,在足够低的温度下,对应于量子点能级的主共振峰两侧的线性谱函数中会出现额外的声子诱导共振峰。还对负有效充电能量的情况进行了数值分析。观察到在量子点能级进入隧穿窗口的阈值偏置电压之上,电流有显著增强(或TMR受到抑制)。还讨论了具有正、负有效库仑关联的非对称结中隧穿电流的栅极电压控制整流效应。

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