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首页> 外文期刊>Journal of Applied Physics >Real space observation of dipolar interaction in arrays of Fe microelements
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Real space observation of dipolar interaction in arrays of Fe microelements

机译:铁微量元素阵列中偶极相互作用的真实空间观察

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摘要

Square lattice arrays of thin microelements of Fe are investigated by magnetic transmission x-ray microscopy. The influence of dipole interaction is analyzed by varying the interelement distance. For comparison isolated elements are prepared on the same sample. The magnetostatic field caused by interelement interaction leads to a substantial stabilization of the elements in the center of the array comparable to the magnetization process previously found by numerical solution of the Landau-Lifshitz equation for magnetic dot arrays. Micromagnetic simulations show that for high field strengths the dipolar interaction is collinear with the external field while in the low-field regime the strayfields have significant perpendicular components leading to a complex reversal mechanism.
机译:通过磁透射x射线显微镜研究了铁的细微元素的方阵阵列。通过改变元素间距离来分析偶极子相互作用的影响。为了比较,在同一样品上准备了隔离的元素。由元素间相互作用引起的静磁场导致阵列中心元素的实质稳定,这与先前通过对磁点阵列的Landau-Lifshitz方程的数值解所发现的磁化过程相当。微磁模拟表明,对于高场强,偶极相互作用与外部场共线,而在低场状态下,杂散场具有明显的垂直分量,从而导致复杂的反转机制。

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