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Atomic and electronic structure of twin growth defects in magnetite

机译:磁铁矿中孪生生长缺陷的原子和电子结构

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摘要

We report the existence of a stable twin defect in Fe3O4 thin films. By using aberration corrected scanning transmission electron microscopy and spectroscopy the atomic structure of the twin boundary has been determined. The boundary is confined to the (111) growth plane and it is non-stoichiometric due to a missing Fe octahedral plane. By first principles calculations we show that the local atomic structural configuration of the twin boundary does not change the nature of the superexchange interactions between the two Fe sublattices across the twin grain boundary. Besides decreasing the half-metallic band gap at the boundary the altered atomic stacking at the boundary does not change the overall ferromagnetic (FM) coupling between the grains.
机译:我们报道了Fe3O4薄膜中存在稳定的孪晶缺陷。通过使用像差校正扫描透射电子显微镜和光谱学,已经确定了孪晶边界的原子结构。边界被限制在(111)生长平面上,并且由于缺少Fe八面体平面,该边界是非化学计量的。通过第一性原理计算,我们表明孪晶边界的局部原子结构构型不会改变跨越孪晶晶界的两个铁亚晶格之间的超交换相互作用的性质。除了减小边界处的半金属带隙之外,边界处原子堆叠的改变不会改变晶粒之间的整体铁磁(FM)耦合。

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