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Local-magnetic-field generation with a scanning tunneling microscope

机译:扫描隧道显微镜产生局部磁场

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We report on the manipulation of magnetic ultrathin structures of small lateral size by applying a local magnetic field generated with a ferromagnetic scanning tunneling microscope (STM) tip. The range and strength of the stray field of a ferromagnetic tip depends largely on the curvature at the tip's apex and on the cone angle. The ability to vary these parameters renders it possible to produce tailored ferromagnetic STM tips for the experiment. The technique is applied to the ferromagnetic system of Fe epitaxially grown on Cu(001). At room temperature, 1.8 monolayers (ML) to 2.9 ML Fe films show a perpendicular magnetic anisotropy. The local magnetic field was applied to particles of Fe/Cu(001) with lateral size in the order of a few micrometers, after which magnetic switching was observed. Theoretical studies based on experimental data of ferromagnetic STM tips reveal that the magnitude of the stray field is in the order of the bulk magnetization M of the used ferromagnetic tip material. Furthermore, the spatial range of the stray field is in the order of the tip's apex radius.
机译:我们报告了通过施加由铁磁扫描隧道显微镜(STM)尖端产生的局部磁场来操纵横向尺寸较小的磁性超薄结构。铁磁尖端的杂散场的范围和强度在很大程度上取决于尖端顶点的曲率和锥角。改变这些参数的能力使得可以为实验生产定制的铁磁STM尖端。该技术适用于在Cu(001)上外延生长的Fe的铁磁系统。在室温下,1.8个单层(ML)到2.9 ML的铁膜表现出垂直的磁各向异性。将局部磁场施加到横向尺寸约为几微米的Fe / Cu(001)颗粒上,然后观察到磁性转换。基于铁磁STM烙铁头的实验数据的理论研究表明,杂散场的大小约为所用铁磁烙铁头材料的整体磁化强度M的数量级。此外,杂散场的空间范围大约是尖端的顶点半径。

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