Spin-transfer torques for domain wall motion in antiferromagnetically coupled ferrimagnets

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作者
Takaya Okuno
Duck-Ho Kim
Se-Hyeok Oh
Se Kwon Kim
Yuushou Hirata
Tomoe Nishimura
Woo Seung Ham
Yasuhiro Futakawa
Hiroki Yoshikawa
Arata Tsukamoto
Yaroslav Tserkovnyak
Yoichi Shiota
Takahiro Moriyama
Kab-Jin Kim
Kyung-Jin Lee
Teruo Ono
机构
[1] Kyoto University,Institute for Chemical Research
[2] Korea University,Department of Nano
[3] University of California,Semiconductor and Engineering
[4] University of Missouri,Department of Physics and Astronomy
[5] Nihon University,Department of Physics and Astronomy
[6] Funabashi,College of Science and Technology
[7] Korea Advanced Institute of Science and Technology,Department of Physics
[8] Korea University,Department of Materials Science & Engineering
[9] Korea University,KU
[10] Osaka University,KIST Graduate School of Converging Science and Technology
来源
Nature Electronics | 2019年 / 2卷
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摘要
Antiferromagnetic materials offer ultrafast spin dynamics and could be used to build devices that are orders of magnitude faster than those based on ferromagnetic materials. Spin-transfer torque is key to the electrical control of spins and has been demonstrated in ferromagnetic spintronics. However, experimental exploration of spin-transfer torque in antiferromagnets remains limited, despite a number of theoretical studies. Here, we report an experimental examination of the effects of spin-transfer torque on the motion of domain walls in antiferromagnetically coupled ferrimagnets. Using a ferrimagnetic gadolinium–iron–cobalt (GdFeCo) alloy in which Gd and FeCo moments are coupled antiferromagnetically, we find that non-adiabatic spin-transfer torque acts like a staggered magnetic field, providing efficient control of the domain walls. We also show that the non-adiabaticity parameter of the spin-transfer torque is significantly larger than the Gilbert damping parameter, in contrast to the case of non-adiabatic spin-transfer torque in ferromagnets.
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页码:389 / 393
页数:4
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