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Combined first-order reversal curve and x-ray microscopy investigation of magnetization reversal mechanisms in hexagonal antidot lattices

机译:一阶反转曲线和X射线显微镜相结合研究六角形点状点阵中磁化反转机理

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摘要

The magnetization reversal in nanoscaled antidot lattices is widely investigated to understand the tunability of the magnetic anisotropy and the coercive field through nanostructuring of thin films. By investigating highly ordered focused ion beam milled antidot lattices with a combination of first-order reversal curves and magnetic x-ray microscopy, we fully elucidate the magnetization reversal along the distinct orientations of a hexagonal antidot lattice. This combination proves especially powerful as all partial steps of this complex magnetization reversal can be identified and subsequently imaged. Through this approach we discovered several additional steps that were neglected in previous studies. Furthermore, by imaging the microscopic magnetization state during each reversal step, we were able to link the coercive and interaction fields determined by the first-order reversal curve method to true microscopic magnetization configurations and determine their origin.
机译:广泛研究了纳米级解毒剂晶格中的磁化反转,以了解通过薄膜的纳米结构实现的磁各向异性和矫顽场的可调性。通过研究一阶反转曲线和磁性X射线显微镜相结合的高度有序聚焦的离子束铣削的点状点阵,我们充分阐明了沿六角形点状点阵不同方向的磁化反转。事实证明,这种组合特别有效,因为可以识别并逆转此复杂磁化反转的所有部分步骤。通过这种方法,我们发现了先前研究中忽略的其他几个步骤。此外,通过对每个反转步骤期间的微观磁化状态进行成像,我们能够将一阶反转曲线方法确定的矫顽场和相互作用场链接到真实的微观磁化构型并确定其起源。

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  • 来源
    《Physical review》 |2016年第1期|014406.1-014406.8|共8页
  • 作者单位

    Max Planck Institute for Intelligent Systems, Stuttgart, Germany;

    Max Planck Institute for Intelligent Systems, Stuttgart, Germany;

    Max Planck Institute for Intelligent Systems, Stuttgart, Germany;

    Max Planck Institute for Intelligent Systems, Stuttgart, Germany;

    Max Planck Institute for Intelligent Systems, Stuttgart, Germany;

    Max Planck Institute for Intelligent Systems, Stuttgart, Germany;

    Max Planck Institute for Intelligent Systems, Stuttgart, Germany;

    Institute of Solid State Physics, Ulm University, Ulm, Germany;

    Institute of Solid State Physics, Ulm University, Ulm, Germany;

    Institute of Solid State Physics, Ulm University, Ulm, Germany,Faculty of Physics, University of Duisburg-Essen, Duisburg, Germany;

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