Holographic vector field electron tomography of three-dimensional nanomagnets

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作者
Daniel Wolf
Nicolas Biziere
Sebastian Sturm
David Reyes
Travis Wade
Tore Niermann
Jonas Krehl
Benedicte Warot-Fonrose
Bernd Büchner
Etienne Snoeck
Christophe Gatel
Axel Lubk
机构
[1] IFW Dresden,Institute for Solid State Research
[2] CEMES-CNRS 29,Laboratoire des Solides Irradies, Ecole Polytechnique, CNRS, CEA
[3] Universite Paris Saclay,Institute for Optics and Atomic Physics
[4] Technische Universität Berlin,undefined
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Complex 3D magnetic textures in nanomagnets exhibit rich physical properties, e.g., in their dynamic interaction with external fields and currents, and play an increasing role for current technological challenges such as energy-efficient memory devices. To study these magnetic nanostructures including their dependency on geometry, composition, and crystallinity, a 3D characterization of the magnetic field with nanometer spatial resolution is indispensable. Here we show how holographic vector field electron tomography can reconstruct all three components of magnetic induction as well as the electrostatic potential of a Co/Cu nanowire with sub 10 nm spatial resolution. We address the workflow from acquisition, via image alignment to holographic and tomographic reconstruction. Combining the obtained tomographic data with micromagnetic considerations, we derive local key magnetic characteristics, such as magnetization current or exchange stiffness, and demonstrate how magnetization configurations, such as vortex states in the Co-disks, depend on small structural variations of the as-grown nanowire.
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