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首页> 外文期刊>New journal of physics >Pinning and movement of individual nanoscale magnetic skyrmions via defects
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Pinning and movement of individual nanoscale magnetic skyrmions via defects

机译:通过缺陷固定和移动单个纳米级磁性天体

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An understanding of the pinning of magnetic skyrmions to defects is crucial for the development of future spintronic applications. While pinning is desirable for a precise positioning of magnetic skyrmions it is detrimental when they are to be moved through a material. We use scanning tunneling microscopy (STM) to study the interaction between atomic scale defects and magnetic skyrmions that are only a few nanometers in diameter. The studied pinning centers range from single atom inlayer defects and adatoms to clusters adsorbed on the surface of our model system. We find very different pinning strengths and identify preferred positions of the skyrmion. The interaction between a cluster and a skyrmion can be sufficiently strong for the skyrmion to follow when the cluster is moved across the surface by lateral manipulation with the STM tip.
机译:了解将磁天文石固定在缺陷上对于将来自旋电子学应用的发展至关重要。尽管需要钉扎来精确定位磁性天体,但当它们穿过材料移动时,这是有害的。我们使用扫描隧道显微镜(STM)来研究原子尺度缺陷和直径仅为几纳米的磁性天生离子之间的相互作用。研究的钉扎中心范围从单原子夹层缺陷和吸附原子到吸附在我们模型系统表面的簇。我们发现钉扎强度大不相同,并确定了天rm的首选位置。当簇通过STM尖端的横向操纵在表面上移动时,簇和天蝎子之间的相互作用可能足够强,以使天蝎子能够跟随。

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