School of Physics and Astronomy, University of Minnesota, Minneapolis, Minnesota 55455, USA.
Phys Rev Lett. 2012 Aug 31;109(9):097202. doi: 10.1103/PhysRevLett.109.097202. Epub 2012 Aug 27.
Although pinning of domain walls in ferromagnets is ubiquitous, the absence of an appropriate characterization tool has limited the ability to correlate the physical and magnetic microstructures of ferromagnetic films with specific pinning mechanisms. Here, we show that the pinning of a magnetic vortex, the simplest possible domain structure in soft ferromagnets, is strongly correlated with surface roughness, and we make a quantitative comparison of the pinning energy and spatial range in films of various thickness. The results demonstrate that thickness fluctuations on the lateral length scale of the vortex core diameter, i.e., an effective roughness at a specific length scale, provides the dominant pinning mechanism. We argue that this mechanism will be important in virtually any soft ferromagnetic film.
尽管铁磁体中的畴壁钉扎现象无处不在,但缺乏适当的表征工具限制了将铁磁薄膜的物理和磁微观结构与特定的钉扎机制相关联的能力。在这里,我们表明,磁涡旋的钉扎——软铁磁体中最简单的可能畴结构——与表面粗糙度强烈相关,并且我们对不同厚度的薄膜中的钉扎能量和空间范围进行了定量比较。结果表明,在涡旋核心直径的横向长度尺度上的厚度波动,即特定长度尺度上的有效粗糙度,提供了主要的钉扎机制。我们认为,这种机制在几乎任何软铁磁薄膜中都很重要。