首页> 外文会议>Institute of Physics Electron Microscopy and Analysis Group Conference, Sep 5-7, 2001, Dundee >Three-dimensional magnetic fields of nanoscale elements determined by electron-holographic tomography
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Three-dimensional magnetic fields of nanoscale elements determined by electron-holographic tomography

机译:电子全息层析成像技术确定的纳米级元素的三维磁场

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In order to visualise the three-dimensional magnetic fields of nanoscale magnetic elements, we have combined off-axis electron holography (in which the measured phase image is related to the projection of two components of the magnetic induction) and electron tomography (used to reconstruct three-dimensional objects from two-dimensional projections taken at a series of sample tilts). Conventional 'scalar' tomography requires only a single tilt series whilst the reconstruction of a magnetic (vector) field in three dimensions would in principle require three tilt series with mutually perpendicular tilt axes. However, only two series are necessary as the third component of the magnetic field is constrained by Maxwell's equation ▽*B = 0. We have developed a holographic tomography method to reconstruct the three-dimensional magnetic fields of small magnetic elements. Such information is essential if the proposed use of nanoscale magnetic elements for the next generation of high-density data storage and memory is to be fully realised.
机译:为了可视化纳米级磁性元件的三维磁场,我们结合了离轴电子全息术(其中测得的相图与磁感应的两个分量的投影有关)和电子断层摄影术(用于重建一系列样品倾斜处的二维投影得出的三维对象)。常规的“标量”层析成像仅需要一个倾斜序列,而三维(矢量)磁场的重建原则上将需要三个倾斜序列,且每个倾斜轴相互垂直。但是,由于磁场的第三分量受麦克斯韦方程▽* B = 0的约束,因此仅需要两个序列。我们开发了一种全息层析成像方法来重建小型磁性元件的三维磁场。如果要完全实现为下一代高密度数据存储和存储使用纳米级磁性元件的建议,则此类信息至关重要。

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