涡旋状态下磁盘的自旋动力学

Xiaobin Zhu, Zhigang Liu, V. Metlushko, M. R. Freeman
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引用次数: 0

摘要

利用超快光学技术研究了涡旋状态下磁盘的自旋动力学。在Co盘中,我们发现时域自旋动力学与瞬态场方向密切相关。当瞬态场方向平行于磁盘平面时,由于涡旋核的存在,大于2 GHz的Co磁盘出现了自旋波模式的方位分裂。在NiFe/Cu/Co光盘中,即使激光束只探测到NiFe光盘的顶部,我们也观察到存在与Co光盘相似的高频共振。这是由于Co和NiFe层之间的动态偶极相互作用。通过检查衍射点处的时间分辨磁光克尔效应,研究了大阵列NiFe磁盘中的自旋动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spin Dynamics of Magnetic Disks in the Vortex State
Spin dynamics of magnetic disks in the vortex state is studied by ultrafast optics. In patterned Co disks, we found that time-domain spin dynamics are strongly dictated by the transient field direction. For transient field directions applied parallel to the disk plane, an azimuthal spin-wave mode splitting of Co disks of greater than 2 GHz arises on account of the presence of the vortex core. In the NiFe/Cu/Co disks, even though the laser beam only probes the top NiFe disks, we observe that there exists a dominant high frequency resonance close to that of Co disks. This is due to the dynamic dipolar interaction between the Co and NiFe layers. Spin dynamics in a large array of NiFe disks also has been studied through examination of the time-resolved magneto-optical Kerr effect at diffraction spots.
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