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Spin-orbit torques in normal metal/Nb/ferromagnet heterostructures.


ABSTRACT: Quantifying the spin-orbit torque (SOT) efficiency with changing the layer thickness is crucial for understanding the physical background of SOT. This study investigates the Nb-thickness-dependent SOT efficiency of two types of layered heterostructures: Ta/Nb/CoFeB and Pt/Nb/CoFeB. We find that the Nb thickness dependence of the SOT efficiency in the two samples is quite different. In the Pt/Nb series, the SOT sign changes according to the thickness variation because Pt and Nb have different spin-orbit coupling signs. We observe the resulting reversal in switching polarity through current-induced SOT switching experiments. However, due to the same spin-orbit coupling signs of Ta and Nb, no such polarity reversal was observed in Ta/Nb series. Further, we extract the spin diffusion length of Nb in each heterostructure. These results provide a systematic understanding of the material- and thickness-dependent SOT characteristics.

SUBMITTER: Lee MH 

PROVIDER: S-EPMC8548299 | biostudies-literature | 2021 Oct

REPOSITORIES: biostudies-literature

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Spin-orbit torques in normal metal/Nb/ferromagnet heterostructures.

Lee Min Hyeok MH   Go Gyungchoon G   Kim Yong Jin YJ   Cha In Ho IH   Kim Gyu Won GW   Kim Taehyun T   Lee Kyung-Jin KJ   Kim Young Keun YK  

Scientific reports 20211026 1


Quantifying the spin-orbit torque (SOT) efficiency with changing the layer thickness is crucial for understanding the physical background of SOT. This study investigates the Nb-thickness-dependent SOT efficiency of two types of layered heterostructures: Ta/Nb/CoFeB and Pt/Nb/CoFeB. We find that the Nb thickness dependence of the SOT efficiency in the two samples is quite different. In the Pt/Nb series, the SOT sign changes according to the thickness variation because Pt and Nb have different spi  ...[more]

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