Highly anisotropic spin transport in ultrathin black phosphorus

被引:0
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作者
Luke Cording
Jiawei Liu
Jun You Tan
Kenji Watanabe
Takashi Taniguchi
Ahmet Avsar
Barbaros Özyilmaz
机构
[1] Newcastle University,School of Mathematics, Statistics and Physics
[2] National University of Singapore,Centre for Advanced 2D Materials
[3] National Institute for Materials Science,Research Center for Functional Materials
[4] National Institute for Materials Science,International Center for Materials Nanoarchitectonics
[5] National University of Singapore,Department of Physics
[6] National University of Singapore,Department of Materials Science and Engineering
[7] National University of Singapore,Institute for Functional Intelligent Materials
来源
Nature Materials | 2024年 / 23卷
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摘要
In anisotropic crystals, the direction-dependent effective mass of carriers can have a profound impact on spin transport dynamics. The puckered crystal structure of black phosphorus leads to direction-dependent charge transport and optical response, suggesting that it is an ideal system for studying anisotropic spin transport. To this end, we fabricate and characterize high-mobility encapsulated ultrathin black-phosphorus-based spin valves in a four-terminal geometry. Our measurements show that in-plane spin lifetimes are strongly gate tunable and exceed one nanosecond. Through high out-of-plane magnetic fields, we observe a fivefold enhancement in the out-of-plane spin signal case compared to in-plane and estimate a colossal spin-lifetime anisotropy of ∼6. This finding is further confirmed by oblique Hanle measurements. Additionally, we estimate an in-plane spin-lifetime anisotropy ratio of up to 1.8. Our observation of strongly anisotropic spin transport along three orthogonal axes in this pristine material could be exploited to realize directionally tunable spin transport.
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页码:479 / 485
页数:6
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