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铁-六方氮化硼/石墨烯范德华多层膜中相干自旋输运的从头算研究。

Ab initio studies of coherent spin transport in Fe-hBN/graphene van der Waals multilayers.

作者信息

Ukpong Aniekan Magnus

机构信息

Theoretical and Computational Condensed Matter and Materials Physics Group, School of Chemistry and Physics, College of Agriculture, Engineering and Science, University of KwaZulu-Natal, 1 King Edward Road, Scottsville 3201, Pietermaritzburg, South Africa.

出版信息

J Phys Condens Matter. 2017 Jul 19;29(28):285302. doi: 10.1088/1361-648X/aa74a4. Epub 2017 May 22.

Abstract

This paper presents the results of ab initio studies of the electronic spin inversion and filtering in a ferromagnetic multilayer heterostructure. Spin-polarized electronic structure calculations are performed based on van der Waals density functional theory to give unique insights in to the generation, manipulation and transport of coherent spin conductance. By using an exact theory of the self-consistent ground state of the Fe-hBN/graphene multilayer as a model of the magnetic tunnel junction, hidden asymmetries are unraveled in the spin-resolved charge densities. It is shown that the injection of spin into the graphene/boron nitride tunnel layer from a ferromagnetic contact gives rise to coherent spin current. The projected Fermi surfaces of the up and down spin channels are analyzed to reveal Fermi arc topologies and spin anisotropies. It is also demonstrated that the coherent transport of pure spin-down current in the topological Weyl semimetal phase is robust. The implications of the results on out-of-plane transport of spin polarized conductance in van der Waals multilayer spintronic devices is discussed. The insights derived from this study are expected to open up prospects for further exploration of van der Waals magnetic multilayer heterostructures as a versatile platform for developing materials for Weyltronic applications.

摘要

本文介绍了对铁磁多层异质结构中电子自旋反转和过滤的从头算研究结果。基于范德华密度泛函理论进行自旋极化电子结构计算,以深入了解相干自旋电导的产生、操控和传输。通过将Fe-hBN/石墨烯多层的自洽基态精确理论用作磁隧道结模型,揭示了自旋分辨电荷密度中的隐藏不对称性。结果表明,从铁磁接触向石墨烯/氮化硼隧道层注入自旋会产生相干自旋电流。分析了自旋向上和向下通道的投影费米面,以揭示费米弧拓扑和自旋各向异性。还证明了在拓扑外尔半金属相中纯自旋向下电流的相干输运具有鲁棒性。讨论了这些结果对范德华多层自旋电子器件中自旋极化电导面外输运的影响。预计从这项研究中获得的见解将为进一步探索范德华磁性多层异质结构开辟前景,该结构可作为开发用于外尔电子应用材料的通用平台。

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