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    Zhen-Dong Chen, Mei-Yang Ma, Sen-Fu Zhang, Mang-Yuan Ma, Zi-Zhao Pan, Xi-Xiang Zhang, Xue-Zhong Ruan, Yong-Bing Xu, Fu-Sheng Ma. Experimental observation of interlayer perpendicular standing spin wave mode with low damping in skyrmion-hosting Pt/Co/Ta10 multilayerJ. Chin. Phys. B, 2022, 31(11): 117501.
    Zhen-Dong Chen, Mei-Yang Ma, Sen-Fu Zhang, Mang-Yuan Ma, Zi-Zhao Pan, Xi-Xiang Zhang, Xue-Zhong Ruan, Yong-Bing Xu, Fu-Sheng Ma. Experimental observation of interlayer perpendicular standing spin wave mode with low damping in skyrmion-hosting Pt/Co/Ta10 multilayerJ. Chin. Phys. B, 2022, 31(11): 117501.
  • Experimental observation of interlayer perpendicular standing spin wave mode with low damping in skyrmion-hosting Pt/Co/Ta10 multilayer

    • An interlayer perpendicular standing spin wave mode is observed in the skyrmion-hosting Pt/Co/Ta10 multilayer by measuring the time-resolved magneto-optical Kerr effect. The observed interlayer mode depends on the interlayer spin-pumping and spin transfer torque among the neighboring Co layers. This mode shows monotonically increasing frequency-field dependence which is similar to the ferromagnetic resonance mode, but within higher frequency range. Besides, the damping of the interlayer mode is found to be a relatively low constant value of 0.027 which is independent of the external field. This work expounds the potential application of the heavy-metal/ferromagnetic-metaln multilayers to skyrmion-based magnonic devices which can provide multiple magnon modes, relatively low damping, and skyrmion states, simultaneously.
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