Logo image
Strongly exchange-coupled and surface-state-modulated magnetization dynamics in Bi2Se3/yttrium iron garnet heterostructures
Other   Open access

Strongly exchange-coupled and surface-state-modulated magnetization dynamics in Bi2Se3/yttrium iron garnet heterostructures

Y.T. Fanchiang, K.H.M. Chen, C.C. Tseng, C.C. Chen, C.K. Cheng, S.R. Yang, C.N. Wu, S.F. Lee and M. Hong
Nature Communications, Vol.9(1), 223
12/2018
Appears in  keyword about Physics

Abstract

Chemistry (all) Biochemistry Genetics and Molecular Biology (all) Physics and Astronomy (all)
Harnessing the spin-momentum locking of topological surface states in conjunction with magnetic materials is the first step to realize novel topological insulator-based devices. Here, we report strong interfacial coupling in Bi 2 Se 3 /yttrium iron garnet (YIG) bilayers manifested as large interfacial in-plane magnetic anisotropy (IMA) and enhancement of damping probed by ferromagnetic resonance. The interfacial IMA and damping enhancement reaches a maximum when the Bi 2 Se 3 film approaches its two-dimensional limit, indicating that topological surface states play an important role in the magnetization dynamics of YIG. Temperature-dependent ferromagnetic resonance of Bi 2 Se 3 /YIG reveals signatures of the magnetic proximity effect of T C as high as 180 K, an emerging lowerature perpendicular magnetic anisotropy competing the higherature IMA, and an increasing exchange effective field of YIG steadily increasing toward low temperature. Our study sheds light on the effects of topological insulators on magnetization dynamics, essential for the development of topological insulator-based spintronic devices.
url
https://doi.org/10.1038/s41467-017-02743-2View
Published (Version of record) Open

Related links

Details

Logo image