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量子环中的分数电导振荡:少电子体系输运的波包图像。

Fractional conductance oscillations in quantum rings: wave packet picture of transport in a few-electron system.

机构信息

AGH University of Science and Technology, Faculty of Physics and Applied Computer Science, al. Mickiewicza 30, 30-059 Kraków, Poland.

出版信息

J Phys Condens Matter. 2013 Apr 17;25(15):155802. doi: 10.1088/0953-8984/25/15/155802. Epub 2013 Mar 25.

Abstract

We study electron transfer across a two-terminal quantum ring using a time-dependent description of the scattering process. For the considered scattering event the quantum ring is initially charged with one or two electrons, with another electron incident to the ring from the input channel. We study the electron transfer probability (T) as a function of the external magnetic field. We determine the periodicity of T for a varied number of electrons confined within the ring. For that purpose we develop a method to describe the wave packet dynamics for a few electrons participating in the scattering process, taking into full account the electron-electron correlations. We find that electron transfer across the quantum ring initially charged by a single electron acquires a distinct periodicity of half of the magnetic flux quantum (Φ0/2), corresponding to the formation of a transient two-electron state inside the ring. In the case of a three-electron scattering problem with two electrons initially occupying the ring, a period of Φ0/3 for T is formed in the limit of thin channels. The effect of disorder present in the confinement potential of the ring is also discussed.

摘要

我们使用散射过程的时变描述来研究两端量子环中的电子转移。对于所考虑的散射事件,量子环最初带有一个或两个电子,而另一个电子从输入通道进入环。我们研究了电子转移概率 (T) 作为外磁场的函数。我们确定了在环内限制的不同数量的电子的 T 的周期性。为此,我们开发了一种方法来描述参与散射过程的少数几个电子的波包动力学,充分考虑了电子-电子相关性。我们发现,最初由单个电子充电的量子环中的电子转移获得了磁通量量子 (Φ0/2) 的一半的明显周期性,这对应于在环内形成瞬态双电子态。在具有两个电子最初占据环的三电子散射问题的情况下,在薄通道的极限下形成 T 的Φ0/3 周期。还讨论了环的限制势中存在的无序的影响。

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