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Correlation between magnetic spin structure and the three-dimensional geometry in chemically synthesized nanoscale magnetite rings

机译:化学合成纳米级磁铁矿环中磁自旋结构与三维几何的相关性

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摘要

The correlation between magnetic spin structure and geometry in nanoscale chemically synthesized Fe3O4 rings has been investigated by transmission electron microscopy. We find primarily the flux closure vortex states but in rings with thickness variations, an effective stray field occurs. Using tomography, we determine the complete three-dimensional geometries of thicker rings. A direct correlation between the geometry and the magnetization which points out of plane in the thickest parts of the ring yielding an intermediate magnetic state between the vortex state and the tube state is found. The interaction between exchange coupled rings leads to antiparallel vortex states and extended onion states. (c) 2008 American Institute of Physics.
机译:通过透射电子显微镜研究了纳米级化学合成的Fe3O4环中磁自旋结构与几何形状之间的相关性。我们主要发现通量闭合涡旋状态,但是在厚度变化的环中会出现有效的杂散场。使用层析成像,我们确定了较厚环的完整三维几何形状。找到了几何形状和磁化强度之间的直接相关性,该相关性在环的最厚部分中指向平面外,从而在旋涡状态和管状状态之间产生中间磁状态。交换耦合环之间的相互作用导致反平行的涡旋态和扩展的洋葱态。 (c)2008年美国物理研究所。

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