论文标题

通过宽带铁磁共振探测的Co/ag纳米阵列中的自旋波模式的解释

Interpretation of spin-wave modes in Co/Ag nanodot arrays probed by broadband ferromagnetic resonance

论文作者

Markó, Daniel, Cheenikundil, Rajgowrav, Bauer, Julien, Lenz, Kilian, Chuang, Wan-Chen, Lin, Ko-Wei, Wu, Jong-Ching, d'Aquino, Massimiliano, Hertel, Riccardo, Schmool, David S.

论文摘要

我们介绍了Co/ag纳米型中磁化动力学的详细研究,由于它们的尺寸可以支持具有复杂光谱响应的站立自旋波(SSW)模式。为了解释实验测得的宽带矢量网络分析仪铁磁共振数据,我们将纳米阵列结构的光谱与不厚度相同厚度的不公平的CO/AG膜的光谱进行了比较,该结构是获得系统的一般磁参数的基线。使用新型的频域,动态响应的无基质模拟方法,我们确定了激发模式的性质,这使我们能够评估纳米模特的边界条件。我们发现,基本频率(均匀)模式的频率的计算值和实验值之间的一致性。在实验中存在边缘定位模式的存在已得到证实,并且非常适合理论和微磁模拟,在纳米射线极端的一个平面内方向上具有拍打模式的形式。它的频率低于基本模式的频率,并且已被证明是此类局部SSW模式的假想波矢量的结果。高阶SSW模式可以从该理论中产生,这使我们可以找到第二个散装SSW(201或221或131)的可能模式编号,该模式位于基本模式高于基本模式的频率。

We present a detailed investigation of the magnetization dynamics in Co/Ag nanodots, which due to their size can support standing spin-wave (SSW) modes with complex spectral responses. To interpret the experimentally measured broadband vector network analyzer ferromagnetic resonance data, we compare the spectra of the nanoarray structure with those of the unpatterned Co/Ag film of identical thickness, which serves as a baseline for obtaining the general magnetic parameters of the system. Using a novel frequency domain, matrix-free simulation method of the dynamic response, we identify the nature of the excitation modes, which allows us to assess the boundary conditions for the nanodots. We find an excellent agreement between the calculated and experimental values for the frequencies of the fundamental (uniform-like) (011) mode. The existence of an edge-localized mode in the experiment has been confirmed and fits very well with theory and micromagnetic simulations, having the form of a flapping mode at the extrema of the nanodot in one of the in-plane directions. Its frequency is below the fundamental mode's frequency and has been shown to be a consequence of the imaginary wave vector for such localized SSW modes. Higher order SSW modes can be generated from the theory, which allows us to find a probable mode number for the second bulk SSW (201 or 221 or 131), which lies at frequencies above the fundamental mode.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源