首页> 外文期刊>Physical Review, B. Condensed Matter >Quantum dot in high magnetic fields: Correlated tunneling of electrons probes the spin configuration at the edge of the dot - art. no. 033302
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Quantum dot in high magnetic fields: Correlated tunneling of electrons probes the spin configuration at the edge of the dot - art. no. 033302

机译:高磁场中的量子点:相关的电子隧穿可探测点边缘的自旋结构。没有。 033302

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摘要

Quantum dot systems with a large number of electrons (approximate to 50) defined in a two-dimensional electron system (2DES) show a striking regularity in the occurrence of split Kondo peaks in the differential conductance as a function of the electron number and the magnetic field applied perpendicularly to the plane of the 2DES. The observations are consistent with the well-known redistribution of electrons from the core to the edge of the quantum dot with increasing magnetic field leading to a sequence of paired and unpaired spin configurations at the edge of the quantum dot. The results demonstrate the importance of the tunnel coupling of different electronic states to the leads for the observation of the Kondo effect. [References: 30]
机译:在二维电子系统(2DES)中定义的具有大量电子(约50个)的量子点系统显示出惊人的规律性,即差分电导中分裂的近藤峰的出现与电子数和磁的函数有关垂直于2DES平面施加的磁场。这些观察结果与众所周知的电子从核到量子点边缘的重新分布随磁场的增加而增加,导致在量子点边缘出现一对成对和不成对的自旋结构。结果证明了将不同电子态的隧道耦合至引线对于观察近藤效应的重要性。 [参考:30]

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