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在与量子盒耦合的量子点中,费米子 - 近藤效应和近藤盒机制出现交叉。

Fano-Kondo and the Kondo box regimes crossover in a quantum dot coupled to a quantum box.

作者信息

Apel Victor M, Orellana Pedro A, Pacheco Monica, Anda Enrique V

机构信息

Departamento de Física, Universidad Católica del Norte, Casilla 1280, Antofagasta, Chile.

出版信息

J Phys Condens Matter. 2013 Dec 18;25(50):505601. doi: 10.1088/0953-8984/25/50/505601. Epub 2013 Nov 25.

Abstract

In this work, we study the Kondo effect of a quantum dot (QD) connected to leads and to a discrete set of one-particle states provided by a quantum box represented by a quantum ring (QR) pierced by a magnetic flux side attached to the QD. The interplay between the bulk Kondo effect and the so-called Kondo box regime is studied. In this system the QR energies can be continuously modified by the application of the magnetic field. The crossover between these two regimes is analyzed by changing the connection of the QD to the QR from the weak to the strong coupling regime. In the weak coupling regime, the differential conductance develops a sequence of Fano-Kondo anti-resonances due to destructive interference between the discrete quantum ring levels and the conducting Kondo channel provided by the leads. In the strong coupling regime the differential conductance has very sharp resonances when one of the Kondo discrete sub-levels characterizing the Kondo box is tuned by the applied potential. The conductance, the current fluctuations and the Fano coefficient result as being the relevant physical magnitudes to be analyzed to reveal the physical properties of these two Kondo regimes and the crossover region between them. The results were obtained by using the slave boson mean field theory (SBMFT).

摘要

在这项工作中,我们研究了一个与引线相连并与由被磁通穿透的量子环(QR)表示的量子盒所提供的离散单粒子态相连的量子点(QD)的近藤效应。研究了体近藤效应与所谓的近藤盒 regime 之间的相互作用。在这个系统中,QR 能量可以通过施加磁场来连续改变。通过将 QD 与 QR 的连接从弱耦合 regime 改变为强耦合 regime,分析了这两种 regime 之间的交叉。在弱耦合 regime 中,由于离散量子环能级与引线提供的传导近藤通道之间的相消干涉,微分电导会出现一系列法诺 - 近藤反共振。在强耦合 regime 中,当通过施加的电势调节表征近藤盒的近藤离散子能级之一时,微分电导会出现非常尖锐的共振。电导、电流涨落和法诺系数是分析揭示这两种近藤 regime 及其之间交叉区域物理性质的相关物理量。这些结果是通过使用从属玻色子平均场理论(SBMFT)获得的。

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