Tunable spin injection and detection across a van der Waals interface

被引:0
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作者
Keun-Hong Min
Duk Hyun Lee
Sang-Jun Choi
In-Ho Lee
Junho Seo
Dong Wook Kim
Kyung-Tae Ko
Kenji Watanabe
Takashi Taniguchi
Dong Han Ha
Changyoung Kim
Ji Hoon Shim
Jonghwa Eom
Jun Sung Kim
Suyong Jung
机构
[1] Korea Research Institute of Standards and Science,Interdisciplinary Materials Measurement Institute
[2] Sejong University,Department of Physics and Astronomy
[3] University of Würzburg,Institute for Theoretical Physics and Astrophysics
[4] Pohang University of Science and Technology,Department of Physics
[5] Institute for Basic Science,Center for Artificial Low Dimensional Electronic Systems
[6] Pohang University of Science and Technology,Department of Chemistry
[7] Korea Basic Science Institute,Research Center for Materials Analysis
[8] National Institute for Materials Science,Advanced Materials Laboratory
[9] Seoul National University,Department of Physics and Astronomy
[10] Institute for Basic Science,Center for Correlated Electron Systems
来源
Nature Materials | 2022年 / 21卷
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摘要
Van der Waals heterostructures with two-dimensional magnets offer a magnetic junction with an atomically sharp and clean interface. This attribute ensures that the magnetic layers maintain their intrinsic spin-polarized electronic states and spin-flipping scattering processes at a minimum level, a trait that can expand spintronic device functionalities. Here, using a van der Waals assembly of ferromagnetic Fe3GeTe2 with non-magnetic hexagonal boron nitride and WSe2 layers, we demonstrate electrically tunable, highly transparent spin injection and detection across the van der Waals interfaces. By varying an electrical bias, the net spin polarization of the injected carriers can be modulated and reversed in polarity, which leads to sign changes of the tunnelling magnetoresistance. We attribute the spin polarization reversals to sizable contributions from high-energy localized spin states in the metallic ferromagnet, so far inaccessible in conventional magnetic junctions. Such tunability of the spin-valve operations opens a promising route for the electronic control of next-generation low-dimensional spintronic device applications.
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页码:1144 / 1149
页数:5
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