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Spin-filtered and spatially distinguishable crossed Andreev reflection in a silicene-superconductor junction

机译:硅-超导体结中的自旋滤波和空间可分辨的交叉安德列夫反射

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摘要

We theoretically investigate the quantum transport in a junction between a superconductor and a silicene nanoribbon, under the effect of a magnetic exchange field. We find that for a narrow nanoribbon of silicene, remarkable crossed Andreev reflection (with a fraction > 50%) can be induced in the energy window of the elastic cotunneling, by destroying some symmetries of the system. Since the energy responses of electrons to the exchange field are opposite for opposite spins, these transport channels can be well spin polarized. Moreover, due to the helicity conservation of the topological edge states, the Andreev reflection, the crossed Andreev reflection, and the elastic cotunneling are spatially separated in three different locations of the device, making them experimentally distinguishable. This crossed Andreev reflection is a nonlocal quantum interference between opposite edges through evanescent modes. If two superconducting leads with different phases are connected to two edges of the silicene nanoribbon, the crossed Andreev reflection can present Josephson type oscillations, with a maximal fraction similar to 100%.
机译:我们从理论上研究了在磁场交换作用下超导体和硅纳米带之间的结合处的量子传输。我们发现,对于狭窄的硅纳米带,可以通过破坏系统的某些对称性,在弹性共隧洞的能量窗口中引发显着的Andreev交叉交叉反射(分数> 50%)。由于电子对交换场的能量响应对于相反的自旋是相反的,因此这些传输通道可以很好地自旋极化。此外,由于拓扑边缘状态的螺旋性守恒,Andreev反射,Andreev交叉反射和弹性隧道效应在设备的三个不同位置在空间上分开,从而使它们在实验上可区分。这种交叉的安德列夫反射是通过e逝模在相对边缘之间的非局部量子干涉。如果将两个不同相的超导导线连接到硅纳米带的两个边缘,则交叉的安德列夫反射会呈现约瑟夫森型振荡,最大分数类似于100%。

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