论文标题

朝向完全二维的自旋设备

Towards fully two-dimensional spintronic devices

论文作者

Kaverzin, Alexey A., Ghiasi, Talieh S., Dismukes, Avalon H., Roy, Xavier, van Wees, Bart J.

论文摘要

在Spintronics领域内,主要努力是针对用二维(2D)材料完全制造的基于自旋的运输设备的应用。在这项工作中,我们介绍了一种自旋阀装置的实验实现,其中自旋信号的产生仅归因于磁石墨烯的自旋依赖性电导率,这是由于中间层抗fiferromagnet(CRSBR)的接近而产生的。我们清楚地表明,当采用石墨烯/CRSBR异质结构时,可以完全避免使用常规的3D磁性接触(通常是空气敏感且与实用技术不兼容的使用)。此外,除了提供异常长的自旋松弛长度之外,对旋转的生成和运输的使用量还可以自动避免使用常规的低抗性触点时必须考虑的源与通道电路之间的电导率不匹配。我们的结果介绍了从分层材料中旋转电路的工程中的必要步骤,并在复杂的自旋逻辑设备领域的进一步发展之前。此外,我们引入了制造程序,在其中设计并实施了通过无损伤技术制备电极的食谱,该技术在空气敏感和精致的有机材料领域提供了直接优势。

Within the field of spintronics major efforts are directed towards developing applications for spin-based transport devices made fully out of two-dimensional (2D) materials. In this work we present an experimental realization of a spin-valve device where the generation of the spin signal is exclusively attributed to the spin-dependent conductivity of the magnetic graphene resulting from the proximity of an interlayer antiferromagnet, CrSBr. We clearly demonstrate that the usage of the conventional 3D magnetic contacts, that are commonly air-sensitive and incompatible with practical technologies, can be fully avoided when graphene/CrSBr heterostructures are employed. Moreover, apart from providing exceptionally long spin relaxation length, the usage of graphene for both generation and transport of the spin allows to automatically avoid the conductivity mismatch between the source and the channel circuits that has to be considered when using conventional low-resistive contacts. Our results address a necessary step in the engineering of spintronic circuitry out of layered materials and precede further developments in the area of complex spin-logic devices. Moreover, we introduce a fabrication procedure where we designed and implemented a recipe for the preparation of electrodes via a damage-free technique that offers an immediate advantage in the fields of air-sensitive and delicate organic materials.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源