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

机译:Fano–Kondo和Kondo盒政权在与量子盒耦合的量子点中的交叉

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摘要

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).
机译:在这项工作中,我们研究了量子点(QD)的近藤效应,该量子点连接到引线和离散的单粒子态集,该量子态由量子盒表示,量子盒由量子环(QR)表示,量子环由与磁通量侧面相连的量子环穿透QD。研究了大量的近藤效应与所谓的近藤盒子制度之间的相互作用。在该系统中,QR能量可以通过施加磁场来连续地修改。通过将QD与QR的连接从弱耦合机制更改为强耦合机制,可以分析这两种机制之间的交叉。在弱耦合状态下,由于离散量子环能级与导线提供的导电近藤通道之间的破坏性干扰,差分电导会形成一系列的Fano-Kondo反谐振。在强耦合状态下,当表征近藤箱体的近藤离散子级之一通过所施加的电位进行调整时,差分电导具有非常尖锐的谐振。电导率,电流波动和Fano系数是要分析的相关物理量,以揭示这两个近藤状态以及它们之间的交叉区域的物理性质。使用奴隶玻色子平均场理论(SBMFT)获得了结果。

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