Streubel Robert, Kronast Florian, Fischer Peter, Parkinson Dula, Schmidt Oliver G, Makarov Denys
Institute for Integrative Nanosciences, IFW Dresden, 01069 Dresden, Germany.
Helmholtz-Zentrum Berlin für Materialien und Energie GmbH, Berlin 12489, Germany.
Nat Commun. 2015 Jul 3;6:7612. doi: 10.1038/ncomms8612.
X-ray tomography is a well-established technique to characterize 3D structures in material sciences and biology; its magnetic analogue--magnetic X-ray tomography--is yet to be developed. Here we demonstrate the visualization and reconstruction of magnetic domain structures in a 3D curved magnetic thin films with tubular shape by means of full-field soft X-ray microscopies. The 3D arrangement of the magnetization is retrieved from a set of 2D projections by analysing the evolution of the magnetic contrast with varying projection angle. Using reconstruction algorithms to analyse the angular evolution of 2D projections provides quantitative information about domain patterns and magnetic coupling phenomena between windings of azimuthally and radially magnetized tubular objects. The present approach represents a first milestone towards visualizing magnetization textures of 3D curved thin films with virtually arbitrary shape.
X射线断层扫描是材料科学和生物学中用于表征三维结构的成熟技术;其磁学类似物——磁X射线断层扫描——尚未得到发展。在此,我们通过全场软X射线显微镜展示了利用管状形状的三维弯曲磁性薄膜中的磁畴结构的可视化和重建。通过分析磁对比度随投影角度变化的情况,从一组二维投影中获取磁化强度的三维排列。使用重建算法分析二维投影的角度演变,可提供有关畴图案以及方位向和径向磁化管状物体绕组之间磁耦合现象的定量信息。目前的方法是朝着可视化具有几乎任意形状的三维弯曲薄膜的磁化纹理迈出的第一个里程碑。