论文标题

拓扑铁磁 - 纳米线中的量化自旋泵

Quantized spin pumping in topological ferromagnetic-superconducting nanowires

论文作者

Becerra, V. Fernández, Trif, Mircea, Hyart, Timo

论文摘要

在诱导的超导性和铁磁学存在下,具有强旋轨耦合的半导体纳米线可以支持Majorana零模式。我们研究了由于单次带纳米线中磁化的进攻而导致的泵化,并表明当杂交纳米线处于拓扑上的非平凡相中时,旋转泵的量很强,而电荷泵未量化。此外,在长拓扑上的纳米线中,量化的电导率,熵变化和旋转泵之间存在一对一的对应关系,但是在琐碎阶段意外零能量的Andreev结合状态下,这些可观察到的物体是不相关的。因此,我们得出的结论是,在电导率,熵变化和旋转泵送中相关和量化峰的观察将提供有力的零模式的证据,并且我们详细阐述了如何将拓扑构造零模式与Quasi-Majorana模式区分开,并通过Lead-Nanowire界面的平滑隧道屏障可能产生。最后,我们讨论在非常低的能量下短纳米线中影响自旋泵的特殊干扰效应。

Semiconducting nanowires with strong spin-orbit coupling in the presence of induced superconductivity and ferromagnetism can support Majorana zero modes. We study the pumping due to the precession of the magnetization in single-subband nanowires and show that spin pumping is robustly quantized when the hybrid nanowire is in the topologically nontrivial phase, whereas charge pumping is not quantized. Moreover, there exists one-to-one correspondence between the quantized conductance, entropy change and spin pumping in long topologically nontrivial nanowires but these observables are uncorrelated in the case of accidental zero-energy Andreev bound states in the trivial phase. Thus, we conclude that observation of correlated and quantized peaks in the conductance, entropy change and spin pumping would provide strong evidence of Majorana zero modes, and we elaborate how topological Majorana zero modes can be distinguished from quasi-Majorana modes potentially created by a smooth tunnel barrier at the lead-nanowire interface. Finally, we discuss peculiar interference effects affecting the spin pumping in short nanowires at very low energies.

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