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首页> 外文期刊>Physical Review, B. Condensed Matter >Superconductor coupled to two Luttinger liquids as an entangler for electron spins - art. no. 165327
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Superconductor coupled to two Luttinger liquids as an entangler for electron spins - art. no. 165327

机译:超导体与两种Luttinger液体耦合,作为电子自旋的纠缠剂-艺术。没有。 165327

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We consider an s-wave superconductor (SC) which is tunnel coupled to two spatially separated Luttinger-liquid (LL) leads. We demonstrate that such a setup acts as an entangler, i.e., it creates spin singlets of two electrons which are spatially separated, thereby providing a source of electronic Einstein-Podolsky-Rosen pairs. We show that in the presence of a bias voltage, which is smaller than the energy gap in the SC, a stationary current of spin-entangled electrons can flow from the SC to the LL leads due to Andreev tunneling events. We discuss two competing transport channels for Cooper pairs to tunnel from the SC into the LL leads. On the one hand, the coherent tunneling of two electrons into the same LL lead is shown to be suppressed by strong LL correlations compared to single-electron tunneling into a LL. On the other hand, the tunneling of two spin-entangled electrons into different leads is suppressed by the initial spatial separation of the two electrons coming from the same Cooper pair. We show that the latter suppression depends crucially on the effective dimensionality of the SC. We identify a regime of experimental interest in which the separation of two spin-entangled electrons is favored. We determine the decay of the singlet state of two electrons injected into different leads caused by the LL correlations. Although the electron is not a proper quasiparticle of the LL, the spin information can still be transported via the spin-density fluctuations produced by the injected spin-entangled electrons. [References: 56]
机译:我们考虑一个s波超导体(SC),其隧道耦合到两个在空间上分离的Luttinger-液体(LL)引线。我们证明了这种装置起纠缠器的作用,即,它产生了两个电子在空间上分开的自旋单重态,从而提供了电子爱因斯坦-波多尔斯基-罗森对的来源。我们表明,在存在一个小于SC中的能隙的偏置电压的情况下,由于Andreev隧穿事件,自旋纠缠电子的稳定电流可以从SC流向LL引线。我们讨论了库珀对从SC到LL引线的隧道传输的两个竞争运输渠道。一方面,与单电子隧穿到LL中相比,强电子与LL相关性抑制了两个电子进入同一LL引线的相干隧穿。另一方面,来自同一个库珀对的两个电子的初始空间分离抑制了两个自旋纠缠的电子隧穿到不同的引线中。我们表明,后者的抑制至关重要地取决于SC的有效尺寸。我们确定了实验兴趣的制度,其中两个自旋纠缠电子的分离是有利的。我们确定由LL相关性引起的注入不同导线的两个电子的单重态的衰减。尽管电子不是LL的适当准粒子,但自旋信息仍然可以通过注入的自旋纠缠电子产生的自旋密度波动来传输。 [参考:56]

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