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Grain-size dependence of intergranular magnetic correlations in nanostructured metals

机译:纳米结构金属中晶间磁相关性的粒度依赖性

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摘要

Magnetic small-angle neutron scattering experiments were performed on nanostructured Fe, Co and Ni samples of varying grain size, produced by inert-gas condensation. The experiments show that the spontaneous spatial magnetic correlations forming in zero-field extend over many individual grains. These correlations depend strongly on grain size. In Fe, they have a minimum at a grain size of around 35 nm and increase sharply for smaller grain sizes. The crossover occurs at grain sizes comparable with L_(crit) = πδ, where δ is the bulk domain-wall width. For grain sizes below L_(crit), the results are explained on the basis of the random-anisotropy model, which takes into account that the magnetic alignment between the grains competes with the anisotropies of the individual grains. Above L_(crit), where domain walls can form within one grain, the magnetization direction corresponds to the anisotropy direction varying from grain to grain, and the magnetic correlation length increases approximately linearly with grain size. Furthermore, the measurements on Fe, Co and Ni show that the spatial magnetic correlations measured by SANS are always larger than L_(crit). This is in agreement with results of theoretical studies showing that nonuniform magnetization configurations can only exist in grains with sizes D > L_(crit).
机译:在惰性气体冷凝产生的不同晶粒度的纳米结构的Fe,Co和Ni样品上进行了磁性小角度中子散射实验。实验表明,零场中自发形成的空间磁相关性扩展到许多单个晶粒上。这些相关性在很大程度上取决于晶粒尺寸。在铁中,它们在约35 nm的晶粒尺寸处具有最小值,并且对于较小的晶粒尺寸会急剧增加。交叉发生在与L_(crit)=πδ相当的晶粒尺寸上,其中δ是整体畴壁宽度。对于小于L_(crit)的晶粒尺寸,基于随机各向异性模型解释了结果,该模型考虑了晶粒之间的磁取向与单个晶粒的各向异性竞争。在L_(临界)以上,可以在一个晶粒内形成畴壁,磁化方向对应于各向异性随晶粒而变化的方向,并且磁相关长度随晶粒大小近似线性增加。此外,对Fe,Co和Ni的测量表明,由SANS测量的空间磁相关性始终大于L_(crit)。这与理论研究的结果一致,该研究表明非均匀磁化构型只能存在于尺寸D> L_(crit)的晶粒中。

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