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具有塞曼分裂的介观 Al 超导体中长程自旋极化准粒子输运。

Long-range spin-polarized quasiparticle transport in mesoscopic Al superconductors with a Zeeman splitting.

机构信息

Institut für Nanotechnologie, Karlsruher Institut für Technologie, Karlsruhe, Germany.

出版信息

Phys Rev Lett. 2012 Nov 16;109(20):207001. doi: 10.1103/PhysRevLett.109.207001. Epub 2012 Nov 13.

Abstract

We report on nonlocal transport in multiterminal superconductor-ferromagnet structures, which were fabricated by means of e-beam lithography and shadow evaporation techniques. In the presence of a significant Zeeman splitting of the quasiparticle states, we find signatures of spin transport over distances of several μm, exceeding other length scales such as the coherence length, the normal-state spin-diffusion length, and the charge-imbalance length. The relaxation length of the spin signal shows a nearly linear increase with magnetic field, hinting at a freeze-out of relaxation by the Zeeman splitting. We propose that the relaxation length is given by the recombination length of the quasiparticles rather than a renormalized spin-diffusion length.

摘要

我们报告了通过电子束光刻和阴影蒸发技术制备的多端超导-铁磁结构中的非局域输运。在准粒子态存在显著的塞曼分裂的情况下,我们发现了自旋输运的迹象,其距离超过几个μm,超过了其他长度尺度,如相干长度、正常态自旋扩散长度和电荷失衡长度。自旋信号的弛豫长度几乎随磁场线性增加,这表明弛豫被塞曼分裂冻结。我们提出,弛豫长度由准粒子的复合长度给出,而不是重新归一化的自旋扩散长度。

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