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  • Cite this article:

    Weihao Li, Xiukai Lan, Xionghua Liu, Enze Zhang, Yongcheng Deng, Kaiyou Wang. Switching plasticity in compensated ferrimagnetic multilayers for neuromorphic computingJ. Chin. Phys. B, 2022, 31(11): 117106.
    Weihao Li, Xiukai Lan, Xionghua Liu, Enze Zhang, Yongcheng Deng, Kaiyou Wang. Switching plasticity in compensated ferrimagnetic multilayers for neuromorphic computingJ. Chin. Phys. B, 2022, 31(11): 117106.
  • Switching plasticity in compensated ferrimagnetic multilayers for neuromorphic computing

    • Current-induced multilevel magnetization switching in ferrimagnetic spintronic devices is highly pursued for the application in neuromorphic computing. In this work, we demonstrate the switching plasticity in Co/Gd ferrimagnetic multilayers where the binary states magnetization switching induced by spin-orbit toque can be tuned into a multistate one as decreasing the domain nucleation barrier. Therefore, the switching plasticity can be tuned by the perpendicular magnetic anisotropy of the multilayers and the in-plane magnetic field. Moreover, we used the switching plasticity of Co/Gd multilayers for demonstrating spike timing-dependent plasticity and sigmoid-like activation behavior. This work gives useful guidance to design multilevel spintronic devices which could be applied in high-performance neuromorphic computing.
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