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Flux-Closure Magnetic States in Triangular Cobalt Ring Elements

机译:三角钴环元素中的磁通闭合磁态

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Ferromagnetic ring elements on the micrometer and submicrometer scale exhibit flux-closure magnetic vortex states in an intermediate step of their magnetization reversal. These clockwise or counterclockwise flux-closure states are of interest for applications that encode binary information in magnetic elements. Here, we study the magnetization reversal process of triangular cobalt rings made by e-beam lithography and lift-off. We demonstrate that full control over the direction of flux-closure magnetic states can be achieved solely by homogeneous external magnetic fields applied in particular directions. We have extracted statistical experimental data pertaining to the range of critical field values that trigger magnetization reversal from magnetic force microscopy images, and we explain the results on the basis of micromagnetic simulations
机译:微米级和亚微米级的铁磁环元件在磁化反转的中间步骤中呈现出磁通封闭的磁涡态。这些顺时针或逆时针的磁通闭合状态对于在磁性元件中编码二进制信息的应用很重要。在这里,我们研究了通过电子束光刻和剥离产生的三角钴环的磁化反转过程。我们证明,仅通过在特定方向上施加均匀的外部磁场,就可以完全控制通量闭合磁状态的方向。我们从磁力显微镜图像中提取了与触发磁化反转的临界场值范围有关的统计实验数据,并在微磁模拟的基础上解释了结果

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