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Single-atom gating and magnetic interactions in quantum corrals

机译:量子腐蚀的单原子门控和磁相互作用

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Single-atom gating, achieved by manipulation of adatoms on a surface, has been shown in experiments to allow precise control over superposition of electronic states in quantum corrals. Using a Green's function approach, we demonstrate theoretically that such atom gating can also be used to control the coupling between magnetic degrees of freedom in these systems. Atomic gating enables control not only on the direct interaction between magnetic adatoms, but also over superpositions of many-body states which can then control long distance interactions. We illustrate this effect by considering the competition between direct exchange between magnetic impurities and the Kondo screening mediated by the host electrons, and how this is affected by gating. These results suggest that both magnetic and nonmagnetic single-atom gating may be used to investigate magnetic impurity systems with tailored interactions, and may allow the control of entanglement of different spin states.
机译:在实验中示出了通过操纵表面上的Adatom来实现的单原子门,以便在量子腐蚀中进行精确控制电子状态的叠加。 使用绿色的功能方法,我们从理论上展示了这种原子门,也可以用于控制这些系统中磁度自由度之间的耦合。 原子门不仅能够控制磁性adatoms之间的直接相互作用,而且还可以控制许多身体状态的叠加,然后可以控制长距离相互作用。 我们通过考虑磁杂质与主机电子介导的磁杂质和kondo筛选之间的直接交换之间的竞争以及通过门控的影响,通过术语来说明这种效果。 这些结果表明,可以使用磁性和非磁性单射脉栅门来研究具有定制相互作用的磁杂质系统,并且可以控制不同旋转状态的缠结。

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