Compton R L, Crowell P A
School of Physics and Astronomy, University of Minnesota, 116 Church Street SE, Minneapolis, Minnesota 55455, USA.
Phys Rev Lett. 2006 Sep 29;97(13):137202. doi: 10.1103/PhysRevLett.97.137202. Epub 2006 Sep 26.
We observe the dynamics of a single magnetic vortex pinned by a defect in a ferromagnetic film. At low excitation amplitudes, the vortex core gyrates about its equilibrium position with a frequency that is characteristic of a single pinning site. At high amplitudes, the frequency of gyration is determined by the magnetostatic energy of the entire vortex, which is confined in a micron-scale disk. We observe a sharp transition between these two amplitude regimes that is due to depinning of the vortex core from a local defect. The distribution of pinning sites is determined by mapping fluctuations in the frequency as the vortex core is displaced by a static in-plane magnetic field.
我们观察了铁磁薄膜中被缺陷钉扎的单个磁涡旋的动力学。在低激励幅度下,涡旋核围绕其平衡位置做圆周运动,其频率是单个钉扎位点的特征频率。在高幅度下,回转频率由整个涡旋的静磁能决定,该涡旋被限制在微米级的圆盘内。我们观察到这两种幅度状态之间的急剧转变,这是由于涡旋核从局部缺陷处脱钉所致。通过绘制当涡旋核被平面内静磁场位移时频率的波动情况,确定钉扎位点的分布。