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Spin filtering and entanglement detection due to spin-orbit interaction in carbon nanotube cross-junctions

机译:碳纳米管交叉结中的自旋轨道相互作用导致的自旋滤波和纠缠检测

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摘要

We demonstrate that, due to their spin-orbit interaction, carbon nanotube cross-junctions have attractive spin projective properties for transport. First, we show that the junction can be used as a versatile spin filter as a function of a backgate and a static external magnetic field. Switching between opposite spin filter directions can be achieved by small changes of the backgate potential, and a full polarization is generically obtained in an energy range close to the Dirac points. Second, we discuss how the spin filtering properties affect the noise correlators of entangled electron pairs, which allows us to obtain signatures of the type of entanglement that are different from the signatures in conventional semiconductor cross-junctions.
机译:我们证明,由于它们的自旋轨道相互作用,碳纳米管交叉结具有吸引人的自旋射影性质的运输。首先,我们证明该结可用作背栅和静态外部磁场的函数,可用作通用自旋滤波器。可以通过背栅电势的微小变化来实现相反的自旋滤波器方向之间的切换,并且通常在接近Dirac点的能量范围内获得完全极化。其次,我们讨论了自旋滤波特性如何影响纠缠电子对的噪声相关器,这使我们可以获得与常规半导体交叉结中的特征不同的特征。

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