连接Kagome人工自旋冰的顶点依赖动态响应

A. Frotanpour, J. Woods, B. Farmer, A. Kaphle, L. E. De Long
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引用次数: 6

摘要

本文给出了连接Kagome人工自旋冰的动态响应,重点讨论了顶点磁化构型对模态特性的影响。我们使用宽带铁磁共振(FMR)光谱和微磁模拟来识别和表征谐振模式。我们发现,细长的单畴膜段的模式频率不仅取决于它们的易轴相对于外加磁场的方向,而且还取决于顶点磁化配置,这表明可以通过改变顶点磁化来控制FMR模式。此外,我们还研究了顶点中心模式(VCM)和局部域壁模式(LDW)的区别。我们发现LDW模式是畴壁成核过程的标志,并且在段反转事件中DW动力学是活跃的。结果表明,VCM和LDW模式可以通过场协议进行控制,这对在磁子和自旋电子器件中的应用具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vertex dependent dynamic response of a connected Kagome artificial spin ice
We present the dynamic response of a connected Kagome artificial spin ice with emphasis on the effect of the vertex magnetization configuration on the mode characteristics. We use broadband ferromagnetic resonance (FMR) spectroscopy and micromagnetic simulations to identify and characterize resonant modes. We find the mode frequencies of elongated, single-domain film segments not only depend on the orientation of their easy-axis with respect to the applied magnetic field, but also depend on the vertex magnetization configuration, which suggests control over the FMR mode can be accomplished by altering the vertex magnetization. Moreover, we study differences between the vertex center mode (VCM) and the localized domain wall (LDW) mode. We show that the LDW mode acts as a signature of the domain wall (DW) nucleation process and the DW dynamics active during segment reversal events. The results show the VCM and LDW modes can be controlled using a field protocol, which has important implications for applications in magnonic and spintronic devices.
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